Involvement of an active-site Zn2+ ligand in the catalytic mechanism of human glyoxalase I
about
A stress-responsive glyoxalase I from the parasitic nematode Onchocerca volvulusModulating glyoxalase I metal selectivity by deletional mutagenesis: underlying structural factors contributing to nickel activation profiles.Characteristic Variations and Similarities in Biochemical, Molecular, and Functional Properties of Glyoxalases across Prokaryotes and Eukaryotes.Nonredox nickel enzymes.Helical shape of Helicobacter pylori requires an atypical glutamine as a zinc ligand in the carboxypeptidase Csd4Biosynthetic gene cluster of cetoniacytone A, an unusual aminocyclitol from the endosymbiotic Bacterium Actinomyces sp. Lu 9419.Glyoxalase I polymorphism rs2736654 causing the Ala111Glu substitution modulates enzyme activity--implications for autism.Genome-wide analysis and expression profiling of glyoxalase gene families in soybean (Glycine max) indicate their development and abiotic stress specific response.Identification and Characterization of a Glyoxalase I Gene in a Rapeseed Cultivar with Seed ThermotoleranceMethylglyoxal in cells elicits a negative feedback loop entailing transglutaminase 2 and glyoxalase 1.Yeast glyoxalase I is a monomeric enzyme with two active sites.Cloning, expression, purification, crystallization and preliminary X-ray diffraction analysis of glyoxalase I from Leishmania infantum.The enigma of the near-symmetry of proteins: Domain swapping.Investigation of metal binding and activation of Escherichia coli glyoxalase I: kinetic, thermodynamic and mutagenesis studies.Purification and partial characterization of glyoxalase I from bovine brain.Allosteric coupling of two different functional active sites in monomeric Plasmodium falciparum glyoxalase I.A nuclear-localized rice glyoxalase I enzyme, OsGLYI-8, functions in the detoxification of methylglyoxal in the nucleus.GLO1 dimer:2xZn2+ transforms MGXL and GSH to (R)-S-LGSH'Chiral compartmentation' in metabolism: enzyme stereo-specificity yielding evolutionary options.Proteomic studies identified a single nucleotide polymorphism in glyoxalase I as autism susceptibility factor.
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P2860
Involvement of an active-site Zn2+ ligand in the catalytic mechanism of human glyoxalase I
description
1998 nî lūn-bûn
@nan
1998 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
1998 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
1998年の論文
@ja
1998年論文
@yue
1998年論文
@zh-hant
1998年論文
@zh-hk
1998年論文
@zh-mo
1998年論文
@zh-tw
1998年论文
@wuu
name
Involvement of an active-site ...... echanism of human glyoxalase I
@ast
Involvement of an active-site ...... echanism of human glyoxalase I
@en
Involvement of an active-site ...... echanism of human glyoxalase I
@en-gb
Involvement of an active-site ...... echanism of human glyoxalase I
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type
label
Involvement of an active-site ...... echanism of human glyoxalase I
@ast
Involvement of an active-site ...... echanism of human glyoxalase I
@en
Involvement of an active-site ...... echanism of human glyoxalase I
@en-gb
Involvement of an active-site ...... echanism of human glyoxalase I
@nl
prefLabel
Involvement of an active-site ...... echanism of human glyoxalase I
@ast
Involvement of an active-site ...... echanism of human glyoxalase I
@en
Involvement of an active-site ...... echanism of human glyoxalase I
@en-gb
Involvement of an active-site ...... echanism of human glyoxalase I
@nl
P2093
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Involvement of an active-site ...... echanism of human glyoxalase I
@en
P2093
A D Cameron
B Mannervik
M Ridderström
P2860
P304
P3181
P356
10.1074/JBC.273.34.21623
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P577
1998-08-21T00:00:00Z