Process | via Protein(s) | Taxonomy |
negative regulation of cell population proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of cell cycle | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of cell cycle G2/M phase transition | Cellular tumor antigen p53 | Homo sapiens (human) |
DNA damage response | Cellular tumor antigen p53 | Homo sapiens (human) |
ER overload response | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to glucose starvation | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of transcription by RNA polymerase II | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of miRNA transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of transcription by RNA polymerase II | Cellular tumor antigen p53 | Homo sapiens (human) |
mitophagy | Cellular tumor antigen p53 | Homo sapiens (human) |
in utero embryonic development | Cellular tumor antigen p53 | Homo sapiens (human) |
somitogenesis | Cellular tumor antigen p53 | Homo sapiens (human) |
release of cytochrome c from mitochondria | Cellular tumor antigen p53 | Homo sapiens (human) |
hematopoietic progenitor cell differentiation | Cellular tumor antigen p53 | Homo sapiens (human) |
T cell proliferation involved in immune response | Cellular tumor antigen p53 | Homo sapiens (human) |
B cell lineage commitment | Cellular tumor antigen p53 | Homo sapiens (human) |
T cell lineage commitment | Cellular tumor antigen p53 | Homo sapiens (human) |
response to ischemia | Cellular tumor antigen p53 | Homo sapiens (human) |
nucleotide-excision repair | Cellular tumor antigen p53 | Homo sapiens (human) |
double-strand break repair | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of DNA-templated transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of transcription by RNA polymerase II | Cellular tumor antigen p53 | Homo sapiens (human) |
protein import into nucleus | Cellular tumor antigen p53 | Homo sapiens (human) |
autophagy | Cellular tumor antigen p53 | Homo sapiens (human) |
DNA damage response | Cellular tumor antigen p53 | Homo sapiens (human) |
DNA damage response, signal transduction by p53 class mediator resulting in cell cycle arrest | Cellular tumor antigen p53 | Homo sapiens (human) |
DNA damage response, signal transduction by p53 class mediator resulting in transcription of p21 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
transforming growth factor beta receptor signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
Ras protein signal transduction | Cellular tumor antigen p53 | Homo sapiens (human) |
gastrulation | Cellular tumor antigen p53 | Homo sapiens (human) |
neuroblast proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of neuroblast proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
protein localization | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of DNA replication | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of cell population proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
determination of adult lifespan | Cellular tumor antigen p53 | Homo sapiens (human) |
mRNA transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
rRNA transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
response to salt stress | Cellular tumor antigen p53 | Homo sapiens (human) |
response to inorganic substance | Cellular tumor antigen p53 | Homo sapiens (human) |
response to X-ray | Cellular tumor antigen p53 | Homo sapiens (human) |
response to gamma radiation | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of gene expression | Cellular tumor antigen p53 | Homo sapiens (human) |
cardiac muscle cell apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of cardiac muscle cell apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
glial cell proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
viral process | Cellular tumor antigen p53 | Homo sapiens (human) |
glucose catabolic process to lactate via pyruvate | Cellular tumor antigen p53 | Homo sapiens (human) |
cerebellum development | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of cell growth | Cellular tumor antigen p53 | Homo sapiens (human) |
DNA damage response, signal transduction by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of transforming growth factor beta receptor signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
mitotic G1 DNA damage checkpoint signaling | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of telomere maintenance via telomerase | Cellular tumor antigen p53 | Homo sapiens (human) |
T cell differentiation in thymus | Cellular tumor antigen p53 | Homo sapiens (human) |
tumor necrosis factor-mediated signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of tissue remodeling | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to UV | Cellular tumor antigen p53 | Homo sapiens (human) |
multicellular organism growth | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of mitochondrial membrane permeability | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to glucose starvation | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
entrainment of circadian clock by photoperiod | Cellular tumor antigen p53 | Homo sapiens (human) |
mitochondrial DNA repair | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of DNA damage response, signal transduction by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of neuron apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
transcription initiation-coupled chromatin remodeling | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of proteolysis | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of DNA-templated transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of DNA-templated transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of RNA polymerase II transcription preinitiation complex assembly | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of transcription by RNA polymerase II | Cellular tumor antigen p53 | Homo sapiens (human) |
response to antibiotic | Cellular tumor antigen p53 | Homo sapiens (human) |
fibroblast proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of fibroblast proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
circadian behavior | Cellular tumor antigen p53 | Homo sapiens (human) |
bone marrow development | Cellular tumor antigen p53 | Homo sapiens (human) |
embryonic organ development | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of peptidyl-tyrosine phosphorylation | Cellular tumor antigen p53 | Homo sapiens (human) |
protein stabilization | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of helicase activity | Cellular tumor antigen p53 | Homo sapiens (human) |
protein tetramerization | Cellular tumor antigen p53 | Homo sapiens (human) |
chromosome organization | Cellular tumor antigen p53 | Homo sapiens (human) |
neuron apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of cell cycle | Cellular tumor antigen p53 | Homo sapiens (human) |
hematopoietic stem cell differentiation | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of glial cell proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
type II interferon-mediated signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
cardiac septum morphogenesis | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of programmed necrotic cell death | Cellular tumor antigen p53 | Homo sapiens (human) |
protein-containing complex assembly | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway in response to endoplasmic reticulum stress | Cellular tumor antigen p53 | Homo sapiens (human) |
thymocyte apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of thymocyte apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
necroptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to hypoxia | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to xenobiotic stimulus | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to ionizing radiation | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to gamma radiation | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to UV-C | Cellular tumor antigen p53 | Homo sapiens (human) |
stem cell proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
signal transduction by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
reactive oxygen species metabolic process | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular response to actinomycin D | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of release of cytochrome c from mitochondria | Cellular tumor antigen p53 | Homo sapiens (human) |
cellular senescence | Cellular tumor antigen p53 | Homo sapiens (human) |
replicative senescence | Cellular tumor antigen p53 | Homo sapiens (human) |
oxidative stress-induced premature senescence | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
oligodendrocyte apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of execution phase of apoptosis | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of mitophagy | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of mitochondrial membrane permeability involved in apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of intrinsic apoptotic signaling pathway by p53 class mediator | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of miRNA transcription | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of G1 to G0 transition | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of miRNA processing | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of glucose catabolic process to lactate via pyruvate | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of pentose-phosphate shunt | Cellular tumor antigen p53 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway in response to hypoxia | Cellular tumor antigen p53 | Homo sapiens (human) |
regulation of fibroblast apoptotic process | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of reactive oxygen species metabolic process | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of reactive oxygen species metabolic process | Cellular tumor antigen p53 | Homo sapiens (human) |
negative regulation of stem cell proliferation | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of cellular senescence | Cellular tumor antigen p53 | Homo sapiens (human) |
positive regulation of intrinsic apoptotic signaling pathway | Cellular tumor antigen p53 | Homo sapiens (human) |
phospholipase C-activating dopamine receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
temperature homeostasis | D(2) dopamine receptor | Homo sapiens (human) |
response to hypoxia | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of protein phosphorylation | D(2) dopamine receptor | Homo sapiens (human) |
response to amphetamine | D(2) dopamine receptor | Homo sapiens (human) |
nervous system process involved in regulation of systemic arterial blood pressure | D(2) dopamine receptor | Homo sapiens (human) |
regulation of heart rate | D(2) dopamine receptor | Homo sapiens (human) |
regulation of sodium ion transport | D(2) dopamine receptor | Homo sapiens (human) |
G protein-coupled receptor internalization | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of neuroblast proliferation | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of receptor internalization | D(2) dopamine receptor | Homo sapiens (human) |
autophagy | D(2) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-inhibiting dopamine receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
neuron-neuron synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
neuroblast proliferation | D(2) dopamine receptor | Homo sapiens (human) |
axonogenesis | D(2) dopamine receptor | Homo sapiens (human) |
synapse assembly | D(2) dopamine receptor | Homo sapiens (human) |
sensory perception of smell | D(2) dopamine receptor | Homo sapiens (human) |
long-term memory | D(2) dopamine receptor | Homo sapiens (human) |
grooming behavior | D(2) dopamine receptor | Homo sapiens (human) |
locomotory behavior | D(2) dopamine receptor | Homo sapiens (human) |
adult walking behavior | D(2) dopamine receptor | Homo sapiens (human) |
protein localization | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of cell population proliferation | D(2) dopamine receptor | Homo sapiens (human) |
associative learning | D(2) dopamine receptor | Homo sapiens (human) |
visual learning | D(2) dopamine receptor | Homo sapiens (human) |
response to xenobiotic stimulus | D(2) dopamine receptor | Homo sapiens (human) |
response to light stimulus | D(2) dopamine receptor | Homo sapiens (human) |
response to toxic substance | D(2) dopamine receptor | Homo sapiens (human) |
response to iron ion | D(2) dopamine receptor | Homo sapiens (human) |
response to inactivity | D(2) dopamine receptor | Homo sapiens (human) |
Wnt signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
striatum development | D(2) dopamine receptor | Homo sapiens (human) |
orbitofrontal cortex development | D(2) dopamine receptor | Homo sapiens (human) |
cerebral cortex GABAergic interneuron migration | D(2) dopamine receptor | Homo sapiens (human) |
adenohypophysis development | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of cell migration | D(2) dopamine receptor | Homo sapiens (human) |
peristalsis | D(2) dopamine receptor | Homo sapiens (human) |
auditory behavior | D(2) dopamine receptor | Homo sapiens (human) |
regulation of synaptic transmission, GABAergic | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of cytokinesis | D(2) dopamine receptor | Homo sapiens (human) |
circadian regulation of gene expression | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of dopamine secretion | D(2) dopamine receptor | Homo sapiens (human) |
response to histamine | D(2) dopamine receptor | Homo sapiens (human) |
response to nicotine | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of urine volume | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of renal sodium excretion | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of multicellular organism growth | D(2) dopamine receptor | Homo sapiens (human) |
response to cocaine | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of circadian sleep/wake cycle, sleep | D(2) dopamine receptor | Homo sapiens (human) |
dopamine metabolic process | D(2) dopamine receptor | Homo sapiens (human) |
drinking behavior | D(2) dopamine receptor | Homo sapiens (human) |
regulation of potassium ion transport | D(2) dopamine receptor | Homo sapiens (human) |
response to morphine | D(2) dopamine receptor | Homo sapiens (human) |
pigmentation | D(2) dopamine receptor | Homo sapiens (human) |
phosphatidylinositol 3-kinase/protein kinase B signal transduction | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of G protein-coupled receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of blood pressure | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of innate immune response | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of transcription by RNA polymerase II | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of insulin secretion | D(2) dopamine receptor | Homo sapiens (human) |
acid secretion | D(2) dopamine receptor | Homo sapiens (human) |
behavioral response to cocaine | D(2) dopamine receptor | Homo sapiens (human) |
behavioral response to ethanol | D(2) dopamine receptor | Homo sapiens (human) |
regulation of long-term neuronal synaptic plasticity | D(2) dopamine receptor | Homo sapiens (human) |
response to axon injury | D(2) dopamine receptor | Homo sapiens (human) |
branching morphogenesis of a nerve | D(2) dopamine receptor | Homo sapiens (human) |
arachidonic acid secretion | D(2) dopamine receptor | Homo sapiens (human) |
epithelial cell proliferation | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of epithelial cell proliferation | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of protein secretion | D(2) dopamine receptor | Homo sapiens (human) |
release of sequestered calcium ion into cytosol | D(2) dopamine receptor | Homo sapiens (human) |
dopamine uptake involved in synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
regulation of dopamine uptake involved in synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of dopamine uptake involved in synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
regulation of synapse structural plasticity | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of phosphatidylinositol 3-kinase/protein kinase B signal transduction | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of synaptic transmission, glutamatergic | D(2) dopamine receptor | Homo sapiens (human) |
excitatory postsynaptic potential | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of growth hormone secretion | D(2) dopamine receptor | Homo sapiens (human) |
prepulse inhibition | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of dopamine receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of ERK1 and ERK2 cascade | D(2) dopamine receptor | Homo sapiens (human) |
regulation of locomotion involved in locomotory behavior | D(2) dopamine receptor | Homo sapiens (human) |
postsynaptic modulation of chemical synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
presynaptic modulation of chemical synaptic transmission | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of cellular response to hypoxia | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of glial cell-derived neurotrophic factor production | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of long-term synaptic potentiation | D(2) dopamine receptor | Homo sapiens (human) |
hyaloid vascular plexus regression | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of neuron migration | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of cytosolic calcium ion concentration | D(2) dopamine receptor | Homo sapiens (human) |
regulation of dopamine secretion | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of adenylate cyclase activity | D(2) dopamine receptor | Homo sapiens (human) |
phospholipase C-activating dopamine receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
negative regulation of voltage-gated calcium channel activity | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of MAPK cascade | D(2) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-activating adrenergic receptor signaling pathway | D(2) dopamine receptor | Homo sapiens (human) |
positive regulation of MAP kinase activity | D(4) dopamine receptor | Homo sapiens (human) |
behavioral fear response | D(4) dopamine receptor | Homo sapiens (human) |
synaptic transmission, dopaminergic | D(4) dopamine receptor | Homo sapiens (human) |
response to amphetamine | D(4) dopamine receptor | Homo sapiens (human) |
intracellular calcium ion homeostasis | D(4) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-inhibiting dopamine receptor signaling pathway | D(4) dopamine receptor | Homo sapiens (human) |
dopamine receptor signaling pathway | D(4) dopamine receptor | Homo sapiens (human) |
adult locomotory behavior | D(4) dopamine receptor | Homo sapiens (human) |
positive regulation of sodium:proton antiporter activity | D(4) dopamine receptor | Homo sapiens (human) |
positive regulation of kinase activity | D(4) dopamine receptor | Homo sapiens (human) |
response to histamine | D(4) dopamine receptor | Homo sapiens (human) |
social behavior | D(4) dopamine receptor | Homo sapiens (human) |
regulation of dopamine metabolic process | D(4) dopamine receptor | Homo sapiens (human) |
dopamine metabolic process | D(4) dopamine receptor | Homo sapiens (human) |
fear response | D(4) dopamine receptor | Homo sapiens (human) |
regulation of circadian rhythm | D(4) dopamine receptor | Homo sapiens (human) |
positive regulation of MAP kinase activity | D(4) dopamine receptor | Homo sapiens (human) |
behavioral response to cocaine | D(4) dopamine receptor | Homo sapiens (human) |
behavioral response to ethanol | D(4) dopamine receptor | Homo sapiens (human) |
rhythmic process | D(4) dopamine receptor | Homo sapiens (human) |
arachidonic acid secretion | D(4) dopamine receptor | Homo sapiens (human) |
negative regulation of protein secretion | D(4) dopamine receptor | Homo sapiens (human) |
positive regulation of dopamine uptake involved in synaptic transmission | D(4) dopamine receptor | Homo sapiens (human) |
inhibitory postsynaptic potential | D(4) dopamine receptor | Homo sapiens (human) |
regulation of postsynaptic neurotransmitter receptor internalization | D(4) dopamine receptor | Homo sapiens (human) |
negative regulation of voltage-gated calcium channel activity | D(4) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-inhibiting serotonin receptor signaling pathway | D(4) dopamine receptor | Homo sapiens (human) |
G protein-coupled receptor signaling pathway, coupled to cyclic nucleotide second messenger | D(4) dopamine receptor | Homo sapiens (human) |
chemical synaptic transmission | D(4) dopamine receptor | Homo sapiens (human) |
response to ethanol | D(3) dopamine receptor | Homo sapiens (human) |
synaptic transmission, dopaminergic | D(3) dopamine receptor | Homo sapiens (human) |
G protein-coupled receptor internalization | D(3) dopamine receptor | Homo sapiens (human) |
intracellular calcium ion homeostasis | D(3) dopamine receptor | Homo sapiens (human) |
G protein-coupled receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-activating dopamine receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-inhibiting dopamine receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
learning or memory | D(3) dopamine receptor | Homo sapiens (human) |
learning | D(3) dopamine receptor | Homo sapiens (human) |
locomotory behavior | D(3) dopamine receptor | Homo sapiens (human) |
visual learning | D(3) dopamine receptor | Homo sapiens (human) |
response to xenobiotic stimulus | D(3) dopamine receptor | Homo sapiens (human) |
regulation of dopamine secretion | D(3) dopamine receptor | Homo sapiens (human) |
positive regulation of cytokinesis | D(3) dopamine receptor | Homo sapiens (human) |
circadian regulation of gene expression | D(3) dopamine receptor | Homo sapiens (human) |
response to histamine | D(3) dopamine receptor | Homo sapiens (human) |
social behavior | D(3) dopamine receptor | Homo sapiens (human) |
response to cocaine | D(3) dopamine receptor | Homo sapiens (human) |
dopamine metabolic process | D(3) dopamine receptor | Homo sapiens (human) |
response to morphine | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of blood pressure | D(3) dopamine receptor | Homo sapiens (human) |
positive regulation of mitotic nuclear division | D(3) dopamine receptor | Homo sapiens (human) |
acid secretion | D(3) dopamine receptor | Homo sapiens (human) |
behavioral response to cocaine | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of oligodendrocyte differentiation | D(3) dopamine receptor | Homo sapiens (human) |
arachidonic acid secretion | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of protein secretion | D(3) dopamine receptor | Homo sapiens (human) |
musculoskeletal movement, spinal reflex action | D(3) dopamine receptor | Homo sapiens (human) |
regulation of dopamine uptake involved in synaptic transmission | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of phosphatidylinositol 3-kinase/protein kinase B signal transduction | D(3) dopamine receptor | Homo sapiens (human) |
prepulse inhibition | D(3) dopamine receptor | Homo sapiens (human) |
positive regulation of dopamine receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of adenylate cyclase activity | D(3) dopamine receptor | Homo sapiens (human) |
adenylate cyclase-activating adrenergic receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of voltage-gated calcium channel activity | D(3) dopamine receptor | Homo sapiens (human) |
regulation of potassium ion transport | D(3) dopamine receptor | Homo sapiens (human) |
phospholipase C-activating dopamine receptor signaling pathway | D(3) dopamine receptor | Homo sapiens (human) |
positive regulation of MAPK cascade | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of cytosolic calcium ion concentration | D(3) dopamine receptor | Homo sapiens (human) |
negative regulation of synaptic transmission, glutamatergic | D(3) dopamine receptor | Homo sapiens (human) |
cell population proliferation | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
positive regulation of B cell proliferation | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
nuclear DNA replication | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
signal transduction in response to DNA damage | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
isotype switching | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
positive regulation of DNA replication | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
positive regulation of isotype switching to IgG isotypes | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
DNA clamp unloading | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
regulation of mitotic cell cycle phase transition | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
negative regulation of intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
positive regulation of cell cycle G2/M phase transition | ATPase family AAA domain-containing protein 5 | Homo sapiens (human) |
negative regulation of receptor internalization | Ataxin-2 | Homo sapiens (human) |
regulation of translation | Ataxin-2 | Homo sapiens (human) |
RNA metabolic process | Ataxin-2 | Homo sapiens (human) |
P-body assembly | Ataxin-2 | Homo sapiens (human) |
stress granule assembly | Ataxin-2 | Homo sapiens (human) |
RNA transport | Ataxin-2 | Homo sapiens (human) |
[Information is prepared from geneontology information from the June-17-2024 release] |