diaminopimelic acid and leucine

diaminopimelic acid has been researched along with leucine in 13 studies

Research

Studies (13)

TimeframeStudies, this research(%)All Research%
pre-19908 (61.54)18.7374
1990's2 (15.38)18.2507
2000's1 (7.69)29.6817
2010's1 (7.69)24.3611
2020's1 (7.69)2.80

Authors

AuthorsStudies
Oiwa, R; Omura, S; Spiri-Nakagawa, P; Tanaka, H; Tanaka, Y1
Koyama, Y; Nagai, T; Oiwa, R; Omura, S; Takahashi, Y; Tanaka, H1
Mulder, E; Woldringh, CL1
Ivanitskaia, LP; Khurnova, LM1
Umezawa, H1
Beever, DE; Bruce, CI; Buttery, PJ; Dawson, JM; Gill, M1
Cooper, S1
Leyhausen, G; Maidhof, A; Müller, WE; Tanaka, W; Umezawa, H; Weissmann, N1
Bray, K; Cooper, S; Gally, D1
BRICAS, E; NICOT, C1
Harada, K; Kawasaki, Y; Nozawa, Y1
Ayyadurai, S; Charania, MA; Ingersoll, SA; Laroui, H; Merlin, D; Narui, Y; Salaita, K; Sitaraman, SV; Wang, B; Yan, Y; Zhou, F1
Chuphal, B; Kumar, R; Rai, U; Roy, B1

Reviews

2 review(s) available for diaminopimelic acid and leucine

ArticleYear
[Low-molecular weight immunomodulators of microbial origin].
    Antibiotiki i khimioterapiia = Antibiotics and chemoterapy [sic], 1989, Volume: 34, Issue:10

    Topics: Adjuvants, Immunologic; Amino Acids, Diamino; Animals; Antineoplastic Agents; Chemical Phenomena; Chemistry; Diaminopimelic Acid; Glycine; Guinea Pigs; Immunologic Deficiency Syndromes; Leucine; Mice; Molecular Weight; Neoplasms, Experimental; Oligopeptides

1989
Low-molecular-weight immunomodifiers produced by micro-organisms.
    Biotechnology & genetic engineering reviews, 1985, Volume: 3

    Topics: Alkaline Phosphatase; Aminopeptidases; Animals; Anti-Bacterial Agents; Antibiotics, Antineoplastic; Antibody Formation; Diaminopimelic Acid; Glycine; Guanidines; Hypersensitivity, Delayed; Immune Tolerance; Immunity; Immunity, Cellular; Lactones; Leucine; Leukemia L1210; Mice; Molecular Weight; Oligopeptides; Peptides; Polycyclic Sesquiterpenes; Sesquiterpenes; T-Lymphocytes, Regulatory

1985

Other Studies

11 other study(ies) available for diaminopimelic acid and leucine

ArticleYear
Studies on bacterial cell wall inhibitors. VIII. Mode of action of a new antibiotic, azureomycin B, in Bacillus cereus T.
    The Journal of antibiotics, 1979, Volume: 32, Issue:10

    Topics: Anti-Bacterial Agents; Bacillus cereus; Cell Wall; Diaminopimelic Acid; Glucosamine; Leucine; Nucleotides; Peptidoglycan; Thymidine; Uridine

1979
Studies on bacterial cell wall inhibitors. VI. Screening method for the specific inhibitors of peptidoglycan synthesis.
    The Journal of antibiotics, 1979, Volume: 32, Issue:10

    Topics: Acholeplasma laidlawii; Anti-Bacterial Agents; Bacillus; Cell Wall; Chloramphenicol; Diaminopimelic Acid; Leucine; Molecular Weight; Mycoplasma; Penicillin G; Peptidoglycan

1979
Autoradiographic analysis of diaminopimelic acid incorporation in filamentous cells of Escherichia coli: repression of peptidoglycan synthesis around the nucleoid.
    Journal of bacteriology, 1991, Volume: 173, Issue:15

    Topics: Autoradiography; Bacterial Proteins; Cell Wall; Diaminopimelic Acid; DNA, Bacterial; Escherichia coli; Leucine; Mutation; Peptidoglycan; Repressor Proteins

1991
Protein metabolism in the rumen of silage-fed steers: effect of fishmeal supplementation.
    The British journal of nutrition, 1988, Volume: 60, Issue:2

    Topics: Animal Feed; Animals; Bacterial Proteins; Cattle; Diaminopimelic Acid; Dietary Proteins; Duodenum; Fermentation; Fish Products; Gastrointestinal Motility; Leucine; Male; Nitrogen; Rumen; Silage

1988
Rate and topography of cell wall synthesis during the division cycle of Salmonella typhimurium.
    Journal of bacteriology, 1988, Volume: 170, Issue:1

    Topics: Bacterial Proteins; Cell Division; Cell Wall; Diaminopimelic Acid; Leucine; Mathematics; Models, Biological; Peptidoglycan; Salmonella typhimurium; Time Factors

1988
Mitogenic potentials of bestatin, amastatin, arphamenines A and B, FK-156 and FK-565 on spleen lymphocytes.
    The Journal of antibiotics, 1985, Volume: 38, Issue:6

    Topics: Adjuvants, Immunologic; Amino Acids, Diamino; Aminopeptidases; Amphotericin B; Animals; Anti-Bacterial Agents; Diaminopimelic Acid; Dipeptides; Glutamyl Aminopeptidase; Leucine; Leucyl Aminopeptidase; Lymphocyte Activation; Lymphocytes; Male; Mice; Mitogens; Oligopeptides; Peptides; Spleen

1985
Synthesis of peptidoglycan and membrane during the division cycle of rod-shaped, gram-negative bacteria.
    Journal of bacteriology, 1993, Volume: 175, Issue:10

    Topics: Cell Cycle; Cell Division; Cell Membrane; Cell Polarity; Cell Wall; Diaminopimelic Acid; Enterobacteriaceae; Escherichia coli; Glycerol; Leucine; Palmitates; Peptidoglycan; Phospholipids; Salmonella typhimurium; Time Factors

1993
[Action of leucine-aminopeptidase on symmetrical peptides of meso-alpha,alpha'-diaminopimelic acid].
    Comptes rendus hebdomadaires des seances de l'Academie des sciences, 1963, Feb-04, Volume: 256

    Topics: Aminopeptidases; Diaminopimelic Acid; Leucine; Leucyl Aminopeptidase; Peptides; Pimelic Acids

1963
Elution behavior of diaminopimelic acid and related diamino acids using the advanced Marfey's method.
    Journal of chromatography. A, 2007, Aug-10, Volume: 1160, Issue:1-2

    Topics: Amino Acids, Diamino; Chromatography, High Pressure Liquid; Cystine; Diaminopimelic Acid; Homocysteine; Isomerism; Leucine; Nitro Compounds; Organoselenium Compounds

2007
L-Ala-γ-D-Glu-meso-diaminopimelic acid (DAP) interacts directly with leucine-rich region domain of nucleotide-binding oligomerization domain 1, increasing phosphorylation activity of receptor-interacting serine/threonine-protein kinase 2 and its interacti
    The Journal of biological chemistry, 2011, Sep-02, Volume: 286, Issue:35

    Topics: Biophysics; Caco-2 Cells; Diaminopimelic Acid; Humans; Immunity, Innate; Inflammation; Leucine; Microscopy, Atomic Force; Nod1 Signaling Adaptor Protein; Nucleotides; Oligopeptides; Peptides; Phosphorylation; Protein Binding; Protein Structure, Tertiary; Reverse Transcriptase Polymerase Chain Reaction; RNA, Small Interfering

2011
Molecular and functional characterization of spotted snakehead NOD1 with an emphasis on structural insights into iE-DAP binding motifs employing advanced bioinformatic tools.
    Journal of biomolecular structure & dynamics, 2022, Volume: 40, Issue:16

    Topics: Computational Biology; Diaminopimelic Acid; Leucine; Nod1 Signaling Adaptor Protein

2022