Page last updated: 2024-11-05

glycylglycine

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Glycylglycine, a dipeptide composed of two glycine residues, is a simple but important molecule with a range of biological and chemical applications. It is synthesized through the condensation reaction of two glycine molecules, releasing water as a byproduct. This synthesis can be achieved through various methods, including enzymatic reactions, solid-phase peptide synthesis, and chemical reactions. Glycylglycine exhibits a variety of effects, including acting as a substrate for peptidases, acting as a buffer in biological systems, and serving as a model compound in the study of peptide structure and function. It is also known to be a precursor to glutathione, a crucial antioxidant in living organisms. The study of glycylglycine is significant because it provides insights into the fundamental chemistry of peptides and proteins. Its simple structure allows researchers to understand the basic principles of peptide synthesis, degradation, and interaction with other molecules. Furthermore, its biological activity and role in glutathione synthesis make it a relevant compound in the investigation of cellular processes and potential therapeutic applications. '

FloraRankFlora DefinitionFamilyFamily Definition
GlycinegenusA non-essential amino acid. It is found primarily in gelatin and silk fibroin and used therapeutically as a nutrient. It is also a fast inhibitory neurotransmitter.[MeSH]FabaceaeThe large family of plants characterized by pods. Some are edible and some cause LATHYRISM or FAVISM and other forms of poisoning. Other species yield useful materials like gums from ACACIA and various LECTINS like PHYTOHEMAGGLUTININS from PHASEOLUS. Many of them harbor NITROGEN FIXATION bacteria on their roots. Many but not all species of beans belong to this family.[MeSH]

Cross-References

ID SourceID
PubMed CID11163
CHEMBL ID292467
CHEBI ID17201
SCHEMBL ID14934
MeSH IDM0009507

Synonyms (80)

Synonym
diglycine (van)
2-(aminoacetamido)acetic acid
gly-gly
[(aminoacetyl)amino]acetic acid
CHEBI:17201 ,
gly2
nsc49346
glycine dipeptide
.alpha.-glycylglycine
glycine, n-glycyl-
nsc-49346
diglycine
2-[(2-aminoacetyl)amino]acetic acid
glycine, glycyl-
inchi=1/c4h8n2o3/c5-1-3(7)6-2-4(8)9/h1-2,5h2,(h,6,7)(h,8,9
glycylglycine ,
556-50-3
C02037
n-glycylglycine
gly-gly, >=99% (titration)
gly-gly, bioperformance certified, cell culture tested, >=99%
glycyl-glycine
G-6000
gly-gly, bioultra, >=99.5% (nt)
glycylglycine, dl-
33903968-DDB2-47F2-9B6C-7C232D1962DA
CHEMBL292467 ,
2-(2-aminoacetamido)acetic acid
bdbm50169222
G0124
h-gly-gly-oh
[(ammonioacetyl)amino]acetate
AKOS001045997
glycyl glycine
ai3-62521
alpha-glycylglycine
einecs 209-127-8
10525p22u0 ,
unii-10525p22u0
nsc 49346
FT-0626788
BBL018705
glycylglycine [mi]
dipeptide-15 [inci]
diglycine [usp-rs]
dipeptide-15
S4810
SCHEMBL14934
gly-gly-oh
h-gly-gly
[(aminoacetyl)amino]acetic acid #
mfcd00008130
G-6001
F2191-0195
CCG-231053
gly-gly, bioxtra, >=99.0% (nt)
gly-gly, 98%
gly-gly, vetec(tm) reagent grade, 99%
((aminoacetyl)amino)acetic acid
n-glycyl- glycine
HY-D0889
CS-0015211
dyglycine, united states pharmacopeia (usp) reference standard
SY018005
glycylgycine
DTXSID90862194
F17229
AS-14771
Q665455
AMY25302
glycylglyine
2-(2-aminoacetamido)aceticacid
STL194277
BP-31104
2-[(2-aminoacetyl)amino]acetic acid (diglycine; n-glycylglycine)
glycylglycine, free base
GG0 ,
2-(2-azanylethanoylamino)ethanoic acid
glycylglycin
EN300-34095

Research Excerpts

Treatment

ExcerptReferenceRelevance
"In glycylglycine-treated livers, energetics showed an improvement over the first 1 h cold storage; ATP and 'energy charge' values remained high and ADP levels (and consequently total adenylate contents) were 0.7-2.4 micro mol/g greater than livers stored in University of Wisconsin solution."( Protective properties of amino acids in liver preservation: effects of glycine and a combination of amino acids on anaerobic metabolism and energetics.
Churchill, TA; Fuller, BJ; Green, CJ, 1995
)
0.81

Compound-Compound Interactions

ExcerptReferenceRelevance
" In this paper, we demonstrate a highly sensitive PGR detection method by using terahertz time-domain spectroscopy combined with metamaterials."( Highly sensitive detection of plant growth regulators by using terahertz time-domain spectroscopy combined with metamaterials.
Du, X; Liu, Y; Ma, G; Mao, H; Wang, B; Wang, Y; Zhang, X, 2021
)
0.62

Bioavailability

ExcerptReferenceRelevance
" Data on the effect of the constituent amino-acids of carnosine on glycylglycine absorption rate have similarly been obtained."( Impairment of jejunal absorption rate of carnosine by glycylglycine in man in vivo.
Cook, GC, 1976
)
0.74
" The patients with sprue had a significant reduction in the rate of absorption of glycine from a 20 mmol/1 solution, but there were no significant differences in the absorption of the other substances."( Intestinal perfusion studies in tropical sprue. 1. Amino acid and dipeptide absorption.
Baker, SJ; Ganapathy, V; Hellier, MD; Mathan, VI; Radhakrishnan, AN, 1976
)
0.26
"To investigate the correlation between in vitro permeation of 11 beta-lactam antibiotics across rat jejunum and their oral bioavailability in humans."( In vitro permeation of beta-lactam antibiotics across rat jejunum and its correlation with oral bioavailability in humans.
Aungst, BJ; Fujisaki, H; Hatakeyama, Y; Kobayashi, M; Miyazaki, K; Ohwada, K; Saitoh, H; Tohyama, M, 2002
)
0.31
"The utilization of the membrane transport protein PEPT1 as a drug delivery system is a promising strategy to enhance the oral bioavailability of drugs."( Three-dimensional quantitative structure-activity relationship analyses of beta-lactam antibiotics and tripeptides as substrates of the mammalian H+/peptide cotransporter PEPT1.
Biegel, A; Brandsch, M; Gebauer, S; Hartrodt, B; Neubert, K; Thondorf, I, 2005
)
0.33
" In animal model, oral administration of glycyl-glycine and alanyl-alanine conjugate nanoparticles of trimethyl chitosan demonstrated reasonable increase in Serum insulin level with relative bioavailability of 17."( In-vitro and in-vivo cytotoxicity and efficacy evaluation of novel glycyl-glycine and alanyl-alanine conjugates of chitosan and trimethyl chitosan nano-particles as carriers for oral insulin delivery.
Bahari Javan, N; Dehpour, AR; Dorkoosh, F; Jafary Omid, N; Partoazar, A; Rafiee Tehrani, M, 2018
)
0.48

Dosage Studied

ExcerptRelevanceReference
" The results revealed that an increased glycylglycine dosage level enhanced both the conversion of XGG-ARP to XGG-CP and the conversion of XGG-CP to 3-deoxyosone."( Temperature-Dependent Catalysis of Glycylglycine on Its Amadori Compound Degradation to Deoxyosone.
Cui, H; Hayat, K; Ho, CT; Ma, M; Wang, Z; Zhang, X, 2022
)
1.27
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (1)

RoleDescription
human metaboliteAny mammalian metabolite produced during a metabolic reaction in humans (Homo sapiens).
human metaboliteAny mammalian metabolite produced during a metabolic reaction in humans (Homo sapiens).
[role information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Drug Classes (2)

ClassDescription
dipeptideAny molecule that contains two amino-acid residues connected by peptide linkages.
dipeptide zwitterionAny peptide zwitterion comprising two amino acid residues. Major structure at pH 7.3.
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Protein Targets (12)

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Angiotensin-converting enzyme Homo sapiens (human)IC50 (µMol)7,244.35990.00010.533610.0000AID38876
Glutamate receptor 1Homo sapiens (human)Ki1,000.00000.01472.50379.2000AID92023
Glutamate receptor 2Homo sapiens (human)Ki1,000.00000.01681.27725.0000AID92023
Glutamate receptor 3Homo sapiens (human)Ki1,000.00000.02060.53222.2000AID92023
Glutamate receptor ionotropic, kainate 3Rattus norvegicus (Norway rat)Ki1,000.00000.00380.79754.1000AID92023
Solute carrier family 15 member 1Homo sapiens (human)IC50 (µMol)820.00000.18000.19000.2000AID266249
Solute carrier family 15 member 1Homo sapiens (human)Ki1,000.00000.18003.39339.8000AID238858; AID92023
Glutamate receptor 4Homo sapiens (human)Ki1,000.00000.04001.23358.8500AID92023
Mu-type opioid receptorCavia porcellus (domestic guinea pig)IC50 (µMol)820.00000.00020.660310.0000AID266249
Solute carrier family 15 member 2Homo sapiens (human)Ki53.85160.79434.22108.0000AID612540
Solute carrier family 15 member 2Rattus norvegicus (Norway rat)Ki42.00003.00006.47788.5000AID681124
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Activation Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Olfactory receptor 51E2Homo sapiens (human)EC50 (µMol)11.00000.00000.07800.5700AID1639697
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (117)

Processvia Protein(s)Taxonomy
response to hypoxiaAngiotensin-converting enzyme Homo sapiens (human)
kidney developmentAngiotensin-converting enzyme Homo sapiens (human)
blood vessel remodelingAngiotensin-converting enzyme Homo sapiens (human)
angiotensin maturationAngiotensin-converting enzyme Homo sapiens (human)
regulation of renal output by angiotensinAngiotensin-converting enzyme Homo sapiens (human)
neutrophil mediated immunityAngiotensin-converting enzyme Homo sapiens (human)
antigen processing and presentation of peptide antigen via MHC class IAngiotensin-converting enzyme Homo sapiens (human)
regulation of systemic arterial blood pressure by renin-angiotensinAngiotensin-converting enzyme Homo sapiens (human)
proteolysisAngiotensin-converting enzyme Homo sapiens (human)
spermatogenesisAngiotensin-converting enzyme Homo sapiens (human)
female pregnancyAngiotensin-converting enzyme Homo sapiens (human)
regulation of blood pressureAngiotensin-converting enzyme Homo sapiens (human)
male gonad developmentAngiotensin-converting enzyme Homo sapiens (human)
response to xenobiotic stimulusAngiotensin-converting enzyme Homo sapiens (human)
embryo development ending in birth or egg hatchingAngiotensin-converting enzyme Homo sapiens (human)
post-transcriptional regulation of gene expressionAngiotensin-converting enzyme Homo sapiens (human)
negative regulation of gene expressionAngiotensin-converting enzyme Homo sapiens (human)
substance P catabolic processAngiotensin-converting enzyme Homo sapiens (human)
bradykinin catabolic processAngiotensin-converting enzyme Homo sapiens (human)
regulation of smooth muscle cell migrationAngiotensin-converting enzyme Homo sapiens (human)
regulation of vasoconstrictionAngiotensin-converting enzyme Homo sapiens (human)
animal organ regenerationAngiotensin-converting enzyme Homo sapiens (human)
response to nutrient levelsAngiotensin-converting enzyme Homo sapiens (human)
response to lipopolysaccharideAngiotensin-converting enzyme Homo sapiens (human)
mononuclear cell proliferationAngiotensin-converting enzyme Homo sapiens (human)
response to laminar fluid shear stressAngiotensin-converting enzyme Homo sapiens (human)
angiotensin-activated signaling pathwayAngiotensin-converting enzyme Homo sapiens (human)
vasoconstrictionAngiotensin-converting enzyme Homo sapiens (human)
hormone metabolic processAngiotensin-converting enzyme Homo sapiens (human)
hormone catabolic processAngiotensin-converting enzyme Homo sapiens (human)
eating behaviorAngiotensin-converting enzyme Homo sapiens (human)
positive regulation of apoptotic processAngiotensin-converting enzyme Homo sapiens (human)
peptide catabolic processAngiotensin-converting enzyme Homo sapiens (human)
positive regulation of vasoconstrictionAngiotensin-converting enzyme Homo sapiens (human)
negative regulation of glucose importAngiotensin-converting enzyme Homo sapiens (human)
regulation of synaptic plasticityAngiotensin-converting enzyme Homo sapiens (human)
lung alveolus developmentAngiotensin-converting enzyme Homo sapiens (human)
amyloid-beta metabolic processAngiotensin-converting enzyme Homo sapiens (human)
arachidonic acid secretionAngiotensin-converting enzyme Homo sapiens (human)
positive regulation of neurogenesisAngiotensin-converting enzyme Homo sapiens (human)
heart contractionAngiotensin-converting enzyme Homo sapiens (human)
regulation of angiotensin metabolic processAngiotensin-converting enzyme Homo sapiens (human)
hematopoietic stem cell differentiationAngiotensin-converting enzyme Homo sapiens (human)
angiogenesis involved in coronary vascular morphogenesisAngiotensin-converting enzyme Homo sapiens (human)
cellular response to glucose stimulusAngiotensin-converting enzyme Homo sapiens (human)
response to dexamethasoneAngiotensin-converting enzyme Homo sapiens (human)
cell proliferation in bone marrowAngiotensin-converting enzyme Homo sapiens (human)
regulation of heart rate by cardiac conductionAngiotensin-converting enzyme Homo sapiens (human)
negative regulation of calcium ion importAngiotensin-converting enzyme Homo sapiens (human)
response to thyroid hormoneAngiotensin-converting enzyme Homo sapiens (human)
blood vessel diameter maintenanceAngiotensin-converting enzyme Homo sapiens (human)
regulation of hematopoietic stem cell proliferationAngiotensin-converting enzyme Homo sapiens (human)
negative regulation of gap junction assemblyAngiotensin-converting enzyme Homo sapiens (human)
cellular response to aldosteroneAngiotensin-converting enzyme Homo sapiens (human)
positive regulation of peptidyl-cysteine S-nitrosylationAngiotensin-converting enzyme Homo sapiens (human)
positive regulation of systemic arterial blood pressureAngiotensin-converting enzyme Homo sapiens (human)
regulation of receptor recyclingGlutamate receptor 1Homo sapiens (human)
signal transductionGlutamate receptor 1Homo sapiens (human)
chemical synaptic transmissionGlutamate receptor 1Homo sapiens (human)
synapse assemblyGlutamate receptor 1Homo sapiens (human)
long-term memoryGlutamate receptor 1Homo sapiens (human)
response to xenobiotic stimulusGlutamate receptor 1Homo sapiens (human)
response to lithium ionGlutamate receptor 1Homo sapiens (human)
positive regulation of gene expressionGlutamate receptor 1Homo sapiens (human)
neuronal action potentialGlutamate receptor 1Homo sapiens (human)
calcium-mediated signalingGlutamate receptor 1Homo sapiens (human)
spinal cord developmentGlutamate receptor 1Homo sapiens (human)
cerebral cortex developmentGlutamate receptor 1Homo sapiens (human)
receptor internalizationGlutamate receptor 1Homo sapiens (human)
response to estradiolGlutamate receptor 1Homo sapiens (human)
monoatomic ion transmembrane transportGlutamate receptor 1Homo sapiens (human)
ionotropic glutamate receptor signaling pathwayGlutamate receptor 1Homo sapiens (human)
response to cocaineGlutamate receptor 1Homo sapiens (human)
positive regulation of membrane potentialGlutamate receptor 1Homo sapiens (human)
response to arsenic-containing substanceGlutamate receptor 1Homo sapiens (human)
response to electrical stimulusGlutamate receptor 1Homo sapiens (human)
regulation of postsynaptic membrane potentialGlutamate receptor 1Homo sapiens (human)
long-term synaptic potentiationGlutamate receptor 1Homo sapiens (human)
long-term synaptic depressionGlutamate receptor 1Homo sapiens (human)
response to fungicideGlutamate receptor 1Homo sapiens (human)
cellular response to amino acid stimulusGlutamate receptor 1Homo sapiens (human)
cellular response to ammonium ionGlutamate receptor 1Homo sapiens (human)
cellular response to dsRNAGlutamate receptor 1Homo sapiens (human)
cellular response to peptide hormone stimulusGlutamate receptor 1Homo sapiens (human)
cellular response to amine stimulusGlutamate receptor 1Homo sapiens (human)
regulation of presynaptic membrane potentialGlutamate receptor 1Homo sapiens (human)
regulation of postsynaptic cytosolic calcium ion concentrationGlutamate receptor 1Homo sapiens (human)
cellular response to brain-derived neurotrophic factor stimulusGlutamate receptor 1Homo sapiens (human)
modulation of chemical synaptic transmissionGlutamate receptor 1Homo sapiens (human)
synaptic transmission, glutamatergicGlutamate receptor 1Homo sapiens (human)
signal transductionGlutamate receptor 2Homo sapiens (human)
chemical synaptic transmissionGlutamate receptor 2Homo sapiens (human)
ionotropic glutamate receptor signaling pathwayGlutamate receptor 2Homo sapiens (human)
synaptic transmission, glutamatergicGlutamate receptor 2Homo sapiens (human)
regulation of postsynaptic membrane potentialGlutamate receptor 2Homo sapiens (human)
monoatomic cation transmembrane transportGlutamate receptor 2Homo sapiens (human)
modulation of chemical synaptic transmissionGlutamate receptor 2Homo sapiens (human)
glutamate receptor signaling pathwayGlutamate receptor 3Homo sapiens (human)
calcium-mediated signalingGlutamate receptor 3Homo sapiens (human)
monoatomic ion transmembrane transportGlutamate receptor 3Homo sapiens (human)
ionotropic glutamate receptor signaling pathwayGlutamate receptor 3Homo sapiens (human)
protein homotetramerizationGlutamate receptor 3Homo sapiens (human)
protein heterotetramerizationGlutamate receptor 3Homo sapiens (human)
regulation of postsynaptic membrane potentialGlutamate receptor 3Homo sapiens (human)
long-term synaptic potentiationGlutamate receptor 3Homo sapiens (human)
regulation of presynaptic membrane potentialGlutamate receptor 3Homo sapiens (human)
modulation of chemical synaptic transmissionGlutamate receptor 3Homo sapiens (human)
synaptic transmission, glutamatergicGlutamate receptor 3Homo sapiens (human)
monoatomic ion transportSolute carrier family 15 member 1Homo sapiens (human)
protein transportSolute carrier family 15 member 1Homo sapiens (human)
peptide transportSolute carrier family 15 member 1Homo sapiens (human)
dipeptide import across plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
tripeptide import across plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
proton transmembrane transportSolute carrier family 15 member 1Homo sapiens (human)
glutamate receptor signaling pathwayGlutamate receptor 4Homo sapiens (human)
monoatomic ion transmembrane transportGlutamate receptor 4Homo sapiens (human)
negative regulation of smooth muscle cell apoptotic processGlutamate receptor 4Homo sapiens (human)
ionotropic glutamate receptor signaling pathwayGlutamate receptor 4Homo sapiens (human)
regulation of postsynaptic membrane potentialGlutamate receptor 4Homo sapiens (human)
regulation of presynaptic membrane potentialGlutamate receptor 4Homo sapiens (human)
modulation of chemical synaptic transmissionGlutamate receptor 4Homo sapiens (human)
synaptic transmission, glutamatergicGlutamate receptor 4Homo sapiens (human)
monoatomic ion transportSolute carrier family 15 member 2Homo sapiens (human)
protein transportSolute carrier family 15 member 2Homo sapiens (human)
peptide transportSolute carrier family 15 member 2Homo sapiens (human)
peptidoglycan transportSolute carrier family 15 member 2Homo sapiens (human)
xenobiotic transportSolute carrier family 15 member 2Homo sapiens (human)
dipeptide transportSolute carrier family 15 member 2Homo sapiens (human)
renal absorptionSolute carrier family 15 member 2Homo sapiens (human)
regulation of nucleotide-binding domain, leucine rich repeat containing receptor signaling pathwaySolute carrier family 15 member 2Homo sapiens (human)
dipeptide import across plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
tripeptide import across plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
antibacterial innate immune responseSolute carrier family 15 member 2Homo sapiens (human)
transport across blood-brain barrierSolute carrier family 15 member 2Homo sapiens (human)
proton transmembrane transportSolute carrier family 15 member 2Homo sapiens (human)
xenobiotic detoxification by transmembrane export across the plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
adenylate cyclase-activating G protein-coupled receptor signaling pathwayOlfactory receptor 51E2Homo sapiens (human)
cell migrationOlfactory receptor 51E2Homo sapiens (human)
melanocyte differentiationOlfactory receptor 51E2Homo sapiens (human)
steroid hormone mediated signaling pathwayOlfactory receptor 51E2Homo sapiens (human)
positive regulation of blood pressureOlfactory receptor 51E2Homo sapiens (human)
detection of chemical stimulus involved in sensory perception of smellOlfactory receptor 51E2Homo sapiens (human)
cellular response to fatty acidOlfactory receptor 51E2Homo sapiens (human)
melanocyte proliferationOlfactory receptor 51E2Homo sapiens (human)
positive regulation of renin secretion into blood streamOlfactory receptor 51E2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (47)

Processvia Protein(s)Taxonomy
endopeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
carboxypeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
metalloendopeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
calmodulin bindingAngiotensin-converting enzyme Homo sapiens (human)
peptidase activityAngiotensin-converting enzyme Homo sapiens (human)
metallopeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
exopeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
tripeptidyl-peptidase activityAngiotensin-converting enzyme Homo sapiens (human)
peptidyl-dipeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
zinc ion bindingAngiotensin-converting enzyme Homo sapiens (human)
chloride ion bindingAngiotensin-converting enzyme Homo sapiens (human)
mitogen-activated protein kinase kinase bindingAngiotensin-converting enzyme Homo sapiens (human)
bradykinin receptor bindingAngiotensin-converting enzyme Homo sapiens (human)
mitogen-activated protein kinase bindingAngiotensin-converting enzyme Homo sapiens (human)
metallodipeptidase activityAngiotensin-converting enzyme Homo sapiens (human)
heterocyclic compound bindingAngiotensin-converting enzyme Homo sapiens (human)
amyloid-beta bindingGlutamate receptor 1Homo sapiens (human)
G-protein alpha-subunit bindingGlutamate receptor 1Homo sapiens (human)
AMPA glutamate receptor activityGlutamate receptor 1Homo sapiens (human)
protein bindingGlutamate receptor 1Homo sapiens (human)
glutamate receptor activityGlutamate receptor 1Homo sapiens (human)
adenylate cyclase bindingGlutamate receptor 1Homo sapiens (human)
immunoglobulin bindingGlutamate receptor 1Homo sapiens (human)
protein kinase bindingGlutamate receptor 1Homo sapiens (human)
glutamate-gated calcium ion channel activityGlutamate receptor 1Homo sapiens (human)
PDZ domain bindingGlutamate receptor 1Homo sapiens (human)
small GTPase bindingGlutamate receptor 1Homo sapiens (human)
myosin V bindingGlutamate receptor 1Homo sapiens (human)
G-protein beta-subunit bindingGlutamate receptor 1Homo sapiens (human)
beta-2 adrenergic receptor bindingGlutamate receptor 1Homo sapiens (human)
glutamate receptor bindingGlutamate receptor 1Homo sapiens (human)
identical protein bindingGlutamate receptor 1Homo sapiens (human)
protein kinase A bindingGlutamate receptor 1Homo sapiens (human)
scaffold protein bindingGlutamate receptor 1Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGlutamate receptor 1Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlutamate receptor 1Homo sapiens (human)
neurotransmitter receptor activity involved in regulation of postsynaptic cytosolic calcium ion concentrationGlutamate receptor 1Homo sapiens (human)
AMPA glutamate receptor activityGlutamate receptor 2Homo sapiens (human)
amyloid-beta bindingGlutamate receptor 2Homo sapiens (human)
glutamate-gated receptor activityGlutamate receptor 2Homo sapiens (human)
AMPA glutamate receptor activityGlutamate receptor 2Homo sapiens (human)
protein bindingGlutamate receptor 2Homo sapiens (human)
ligand-gated monoatomic cation channel activityGlutamate receptor 2Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlutamate receptor 2Homo sapiens (human)
amyloid-beta bindingGlutamate receptor 3Homo sapiens (human)
glutamate-gated receptor activityGlutamate receptor 3Homo sapiens (human)
AMPA glutamate receptor activityGlutamate receptor 3Homo sapiens (human)
glutamate-gated calcium ion channel activityGlutamate receptor 3Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGlutamate receptor 3Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlutamate receptor 3Homo sapiens (human)
proton-dependent oligopeptide secondary active transmembrane transporter activitySolute carrier family 15 member 1Homo sapiens (human)
peptide:proton symporter activitySolute carrier family 15 member 1Homo sapiens (human)
tripeptide transmembrane transporter activitySolute carrier family 15 member 1Homo sapiens (human)
dipeptide transmembrane transporter activitySolute carrier family 15 member 1Homo sapiens (human)
amyloid-beta bindingGlutamate receptor 4Homo sapiens (human)
glutamate-gated receptor activityGlutamate receptor 4Homo sapiens (human)
AMPA glutamate receptor activityGlutamate receptor 4Homo sapiens (human)
ligand-gated monoatomic ion channel activity involved in regulation of presynaptic membrane potentialGlutamate receptor 4Homo sapiens (human)
transmitter-gated monoatomic ion channel activity involved in regulation of postsynaptic membrane potentialGlutamate receptor 4Homo sapiens (human)
protein bindingSolute carrier family 15 member 2Homo sapiens (human)
peptide:proton symporter activitySolute carrier family 15 member 2Homo sapiens (human)
tripeptide transmembrane transporter activitySolute carrier family 15 member 2Homo sapiens (human)
dipeptide transmembrane transporter activitySolute carrier family 15 member 2Homo sapiens (human)
nuclear steroid receptor activityOlfactory receptor 51E2Homo sapiens (human)
G protein-coupled receptor activityOlfactory receptor 51E2Homo sapiens (human)
olfactory receptor activityOlfactory receptor 51E2Homo sapiens (human)
signaling receptor activityOlfactory receptor 51E2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (50)

Processvia Protein(s)Taxonomy
extracellular spaceAngiotensin-converting enzyme Homo sapiens (human)
extracellular regionAngiotensin-converting enzyme Homo sapiens (human)
extracellular spaceAngiotensin-converting enzyme Homo sapiens (human)
lysosomeAngiotensin-converting enzyme Homo sapiens (human)
endosomeAngiotensin-converting enzyme Homo sapiens (human)
plasma membraneAngiotensin-converting enzyme Homo sapiens (human)
external side of plasma membraneAngiotensin-converting enzyme Homo sapiens (human)
basal plasma membraneAngiotensin-converting enzyme Homo sapiens (human)
brush border membraneAngiotensin-converting enzyme Homo sapiens (human)
extracellular exosomeAngiotensin-converting enzyme Homo sapiens (human)
sperm midpieceAngiotensin-converting enzyme Homo sapiens (human)
plasma membraneAngiotensin-converting enzyme Homo sapiens (human)
endoplasmic reticulum membraneGlutamate receptor 1Homo sapiens (human)
plasma membraneGlutamate receptor 1Homo sapiens (human)
cell-cell junctionGlutamate receptor 1Homo sapiens (human)
cell surfaceGlutamate receptor 1Homo sapiens (human)
ER to Golgi transport vesicle membraneGlutamate receptor 1Homo sapiens (human)
postsynaptic densityGlutamate receptor 1Homo sapiens (human)
dendriteGlutamate receptor 1Homo sapiens (human)
endocytic vesicle membraneGlutamate receptor 1Homo sapiens (human)
synaptic vesicle membraneGlutamate receptor 1Homo sapiens (human)
neuromuscular junctionGlutamate receptor 1Homo sapiens (human)
early endosome membraneGlutamate receptor 1Homo sapiens (human)
dendritic spine membraneGlutamate receptor 1Homo sapiens (human)
neuronal cell body membraneGlutamate receptor 1Homo sapiens (human)
endoplasmic reticulum-Golgi intermediate compartment membraneGlutamate receptor 1Homo sapiens (human)
neuronal cell bodyGlutamate receptor 1Homo sapiens (human)
dendritic spineGlutamate receptor 1Homo sapiens (human)
dendritic shaftGlutamate receptor 1Homo sapiens (human)
axonal spineGlutamate receptor 1Homo sapiens (human)
neuron spineGlutamate receptor 1Homo sapiens (human)
postsynaptic membraneGlutamate receptor 1Homo sapiens (human)
presynaptic active zone membraneGlutamate receptor 1Homo sapiens (human)
recycling endosomeGlutamate receptor 1Homo sapiens (human)
recycling endosome membraneGlutamate receptor 1Homo sapiens (human)
excitatory synapseGlutamate receptor 1Homo sapiens (human)
synaptic membraneGlutamate receptor 1Homo sapiens (human)
presynapseGlutamate receptor 1Homo sapiens (human)
postsynaptic density membraneGlutamate receptor 1Homo sapiens (human)
glutamatergic synapseGlutamate receptor 1Homo sapiens (human)
postsynaptic density, intracellular componentGlutamate receptor 1Homo sapiens (human)
perisynaptic spaceGlutamate receptor 1Homo sapiens (human)
AMPA glutamate receptor complexGlutamate receptor 1Homo sapiens (human)
plasma membraneGlutamate receptor 1Homo sapiens (human)
dendritic spineGlutamate receptor 1Homo sapiens (human)
postsynaptic density membraneGlutamate receptor 1Homo sapiens (human)
plasma membraneGlutamate receptor 2Homo sapiens (human)
external side of plasma membraneGlutamate receptor 2Homo sapiens (human)
postsynaptic densityGlutamate receptor 2Homo sapiens (human)
dendriteGlutamate receptor 2Homo sapiens (human)
endocytic vesicle membraneGlutamate receptor 2Homo sapiens (human)
asymmetric synapseGlutamate receptor 2Homo sapiens (human)
neuronal cell bodyGlutamate receptor 2Homo sapiens (human)
dendritic spineGlutamate receptor 2Homo sapiens (human)
excitatory synapseGlutamate receptor 2Homo sapiens (human)
postsynapseGlutamate receptor 2Homo sapiens (human)
postsynaptic endocytic zoneGlutamate receptor 2Homo sapiens (human)
AMPA glutamate receptor complexGlutamate receptor 2Homo sapiens (human)
plasma membraneGlutamate receptor 2Homo sapiens (human)
dendritic spineGlutamate receptor 2Homo sapiens (human)
postsynaptic density membraneGlutamate receptor 2Homo sapiens (human)
plasma membraneGlutamate receptor 3Homo sapiens (human)
endocytic vesicle membraneGlutamate receptor 3Homo sapiens (human)
postsynaptic membraneGlutamate receptor 3Homo sapiens (human)
parallel fiber to Purkinje cell synapseGlutamate receptor 3Homo sapiens (human)
AMPA glutamate receptor complexGlutamate receptor 3Homo sapiens (human)
plasma membraneGlutamate receptor 3Homo sapiens (human)
postsynaptic density membraneGlutamate receptor 3Homo sapiens (human)
dendritic spineGlutamate receptor 3Homo sapiens (human)
plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
brush borderSolute carrier family 15 member 1Homo sapiens (human)
membraneSolute carrier family 15 member 1Homo sapiens (human)
apical plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
apical plasma membraneSolute carrier family 15 member 1Homo sapiens (human)
plasma membraneGlutamate receptor 4Homo sapiens (human)
dendriteGlutamate receptor 4Homo sapiens (human)
endocytic vesicle membraneGlutamate receptor 4Homo sapiens (human)
neuronal cell bodyGlutamate receptor 4Homo sapiens (human)
dendritic spineGlutamate receptor 4Homo sapiens (human)
extracellular vesicleGlutamate receptor 4Homo sapiens (human)
AMPA glutamate receptor complexGlutamate receptor 4Homo sapiens (human)
postsynaptic density membraneGlutamate receptor 4Homo sapiens (human)
plasma membraneGlutamate receptor 4Homo sapiens (human)
dendritic spineGlutamate receptor 4Homo sapiens (human)
phagocytic vesicle membraneSolute carrier family 15 member 2Homo sapiens (human)
plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
membraneSolute carrier family 15 member 2Homo sapiens (human)
apical plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
extracellular exosomeSolute carrier family 15 member 2Homo sapiens (human)
apical plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
plasma membraneSolute carrier family 15 member 2Homo sapiens (human)
plasma membraneOlfactory receptor 51E2Homo sapiens (human)
early endosome membraneOlfactory receptor 51E2Homo sapiens (human)
intracellular organelleOlfactory receptor 51E2Homo sapiens (human)
plasma membraneOlfactory receptor 51E2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (17)

Assay IDTitleYearJournalArticle
AID233320Bitter threshold value; NB denotes 'Not bitter'1987Journal of medicinal chemistry, Oct, Volume: 30, Issue:10
Quantitative structure-activity relationships of the bitter thresholds of amino acids, peptides, and their derivatives.
AID92023Inhibition constant (Ki) for human intestinal peptide carrier2003Journal of medicinal chemistry, Dec-18, Volume: 46, Issue:26
Three-dimensional quantitative structure-activity relationship analyses of peptide substrates of the mammalian H+/peptide cotransporter PEPT1.
AID266246Activation of human PEPT1 expressed in MDCK cells2006Journal of medicinal chemistry, Jun-15, Volume: 49, Issue:12
Human PEPT1 pharmacophore distinguishes between dipeptide transport and binding.
AID664611Inhibition of Streptococcus pyogenes His-tagged IdeS expressed in Escherichia coli BL21 using IgG1 as substrate at 30 mM incubated for 15 mins prior to substrate addition measured after 20 mins by SDS-PAGE analysis2012Journal of medicinal chemistry, Mar-22, Volume: 55, Issue:6
3-aminopiperidine-based peptide analogues as the first selective noncovalent inhibitors of the bacterial cysteine protease IdeS.
AID612540Binding affinity to human PepT2 in SKTP cells2011Bioorganic & medicinal chemistry, Aug-01, Volume: 19, Issue:15
Fragmental modeling of hPepT2 and analysis of its binding features by docking studies and pharmacophore mapping.
AID38876Biological activity was measured against Angiotensin I converting enzyme1995Journal of medicinal chemistry, Jul-07, Volume: 38, Issue:14
Amino acid side chain descriptors for quantitative structure-activity relationship studies of peptide analogues.
AID664607Inhibition of Streptococcus pyogenes His-tagged IdeS expressed in Escherichia coli BL21 using IgG1 as substrate at 30 mM incubated for 15 mins prior to substrate addition measured after 20 mins2012Journal of medicinal chemistry, Mar-22, Volume: 55, Issue:6
3-aminopiperidine-based peptide analogues as the first selective noncovalent inhibitors of the bacterial cysteine protease IdeS.
AID266249Binding affinity to human PEPT1 assessed as inhibition of [14C]Gly-Sar uptake in MDCK cells2006Journal of medicinal chemistry, Jun-15, Volume: 49, Issue:12
Human PEPT1 pharmacophore distinguishes between dipeptide transport and binding.
AID266247Activation of human PEPT1 expressed in MDCK cells relative to Gly-Sar2006Journal of medicinal chemistry, Jun-15, Volume: 49, Issue:12
Human PEPT1 pharmacophore distinguishes between dipeptide transport and binding.
AID500816Inhibition of nitrogen-starved wild type sigma1278b yeast Gap1-mediated amino acid uptake at 5 mM after 60 secs relative to L-citrulline2009Nature chemical biology, Jan, Volume: 5, Issue:1
Transport and signaling via the amino acid binding site of the yeast Gap1 amino acid transceptor.
AID266248Ratio of %GSmax to EC50 for human PEPT1 activation2006Journal of medicinal chemistry, Jun-15, Volume: 49, Issue:12
Human PEPT1 pharmacophore distinguishes between dipeptide transport and binding.
AID681125TP_TRANSPORTER: inhibition of Gly-Sar uptake in PEPT1-expressing LLC-PK1 cells2000Pflugers Archiv : European journal of physiology, Sep, Volume: 440, Issue:5
Structural requirements for determining the substrate affinity of peptide transporters PEPT1 and PEPT2.
AID680827TP_TRANSPORTER: inhibition of VACV uptake (VACV: 20 uM, Gly-Gly: 10000 uM) in PEPT1-expressing CHO cells1999The Journal of pharmacology and experimental therapeutics, Apr, Volume: 289, Issue:1
Interactions of a nonpeptidic drug, valacyclovir, with the human intestinal peptide transporter (hPEPT1) expressed in a mammalian cell line.
AID678988TP_TRANSPORTER: uptake in PEPT2-expressing HeLa cells1998The American journal of physiology, 10, Volume: 275, Issue:4
Electrophysiological characteristics of the proton-coupled peptide transporter PEPT2 cloned from rat brain.
AID238858Binding affinity against membrane transport protein PEPT1 in human Caco-2 cells2005Journal of medicinal chemistry, Jun-30, Volume: 48, Issue:13
Three-dimensional quantitative structure-activity relationship analyses of beta-lactam antibiotics and tripeptides as substrates of the mammalian H+/peptide cotransporter PEPT1.
AID26797Partition coefficient (logP)1987Journal of medicinal chemistry, Oct, Volume: 30, Issue:10
Quantitative structure-activity relationships of the bitter thresholds of amino acids, peptides, and their derivatives.
AID681124TP_TRANSPORTER: inhibition of Gly-Sar uptake in PEPT2-expressing LLC-PK1 cells2000Pflugers Archiv : European journal of physiology, Sep, Volume: 440, Issue:5
Structural requirements for determining the substrate affinity of peptide transporters PEPT1 and PEPT2.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (373)

TimeframeStudies, This Drug (%)All Drugs %
pre-1990115 (30.83)18.7374
1990's62 (16.62)18.2507
2000's89 (23.86)29.6817
2010's90 (24.13)24.3611
2020's17 (4.56)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 39.32

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index39.32 (24.57)
Research Supply Index5.98 (2.92)
Research Growth Index4.53 (4.65)
Search Engine Demand Index61.55 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (39.32)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials2 (0.51%)5.53%
Reviews11 (2.80%)6.00%
Case Studies1 (0.25%)4.05%
Observational0 (0.00%)0.25%
Other379 (96.44%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]