4.4.1.5: lactoylglutathione lyase
This is an abbreviated version!
For detailed information about lactoylglutathione lyase, go to the full flat file.
Word Map on EC 4.4.1.5
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4.4.1.5
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glycation
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detoxify
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gsh
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dicarbonyls
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erythrocyte
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d-lactate
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adduct
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dismutase
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endproducts
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rage
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s-transferase
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mellitus
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methylglyoxal-induced
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glyoxalases
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byproduct
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hyperglycemia
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glutathione-dependent
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phosphoglucomutase
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metalloenzyme
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hemithioacetal
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mg-induced
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hla-a
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aldose
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3-deoxyglucosone
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enediolate
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d-lactic
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pentosidine
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cyclopentyl
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mdhar
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haptoglobin
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aminoguanidine
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diesters
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monodehydroascorbate
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6-phosphogluconate
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anti-glycation
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dehydroascorbate
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anxiety-like
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gsh-dependent
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pyridoxamine
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analysis
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trypanothione
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medicine
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drug development
- 4.4.1.5
-
glycation
-
detoxify
- gsh
-
dicarbonyls
- erythrocyte
- d-lactate
- adduct
- dismutase
-
endproducts
- rage
- s-transferase
- mellitus
-
methylglyoxal-induced
-
glyoxalases
-
byproduct
- hyperglycemia
-
glutathione-dependent
- phosphoglucomutase
-
metalloenzyme
- hemithioacetal
-
mg-induced
- hla-a
- aldose
- 3-deoxyglucosone
-
enediolate
-
d-lactic
-
pentosidine
-
cyclopentyl
- mdhar
- haptoglobin
- aminoguanidine
- diesters
- monodehydroascorbate
- 6-phosphogluconate
-
anti-glycation
- dehydroascorbate
-
anxiety-like
-
gsh-dependent
- pyridoxamine
- analysis
- trypanothione
- medicine
- drug development
Reaction
Synonyms
aldoketomutase, CLO GlxI, Glb33, GLI, GLO I, GLO-1, GLO-I, Glo1, GloA, GloA1, GloA2, GloA3, GloI, Glx I, Glx-I, Glx1, GLXI, Gly I, gly-I, GLY1, glyoxalase 1, glyoxalase I, glyoxalase-1, glyoxalase-I, glyoxylase I, GmGlyox I, ketone-aldehyde mutase, lactoylglutathione lyase, lactoylglutathione methylglyoxal lyase, LGL, lyase, lactoylglutathione, methylglyoxalase, methylglyoxylase, OsGLYI-11.2, PfGlx I, rhGLO I, S-D-lactoylglutathione methylglyoxal lyase, S-D-lactoylglutathione methylglyoxal lyase (isomerizing), S-D-lactoylglutathione:methylglyoxal lyase, SpGlo1, STM3117, YaiA
ECTree
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Expression
Expression on EC 4.4.1.5 - lactoylglutathione lyase
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activation of receptor for advanced glycation endproducts by S100A12 protein decreases the expression of glyoxalase 1
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activity of glyoxalase I decreased under NaCl stress, at 48 h of NaCl stress the decrease is maximum
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aged ovaries show a 2.9fold decreased protein level and a 1.4fold decreased RNA level of GLO1
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compared with the respective parental cells, hypoxia adapted-Bcr-Abl+ cells have higher levels of protein and higher enzyme activity of glyoxalase-I. High Glo-I expression is sustained in hypoxia adapted-chronic myeloid leukemia cells after 6 months in normoxia
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expression of GLO1 is induced by stress inducers such as methylglyoxal, H2O2, KCl, and NaCl
Gly I expression is induced by the inoculation of Fusarium graminearum in wheat spikes, the magnitude of Gly I mRNAs enhances significantly about twofold in 100 mM NaCl, however, with the increase of NaCl concentration to 150 and 500 mM, the Gly I mRNAs decrease to the similar level as control. When treated with ZnCl2, the mRNA level of Gly I in leaves increases gradually with the increase of ZnCl2 concentration
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Gly-I activity in N-acetylcysteine-exposed cells is 40% higher than that in control cells
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glyoxlase I activity decreases in heavy metal stress (exposure to 0.5 mM CdCl2)
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glyoxylase I expression is upregulated up to 10fold at the mRNA and protein level in metastatic melanoma tissue
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high Glo1 expression is strongly associated with high anxiety-like behavior in mice
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low temperature (4°C) stress shows the highest induction (2.6fold) of glyoxalase I activity, followed by salinity (exposure to 400 mM NaCl) and drought (exposure to 10% (v/v) PEG) stress for 7 days
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maximum expression at the exponential growth phase
methylglyoxal-mediated anxiolysis involves elevated expression of glyoxalase 1 in the brain, methylglyoxal treatment increases expression of GLO1 only in CD1 mice that do not have extra copies of GLO1. GLO1 expression is ubiquitously elevated in low-anxiety-related behavior-phenotype brain. Methylglyoxal injections into the lateral ventricle of hyper-anxious-related behavior-phenotype mice enhance GLO1 expression
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oleanolic acid treatments at 0.1 or 0.2% (v/v) dose-dependently enhances renal glyoxalase I activity and up-regulates renal glyoxalase I mRNA expression
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quantification of protein abundance in cerebellar tissue reveals, after normalization, a significant 3.9fold increase of GLO1 in 14N labeled LABs compared to 15N labeled high anxious behavior-mice
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the activity of glyoxalase I increases with increasing NaCl concentration, activity of glyoxalase I is significantly increased 1.2, 1.3, and 1.6fold more than control plants for 450, 600, and 750 mM NaCl treatment, respectively
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the expression of GLO1 is induced following treatment with Ca2+ and is dependent on the mitogen-activated protein kinase Hog1 protein and the Msn2/Msn4 transcription factors, the Ca2+-induced expression of GLO1 is enhanced in the presence of FK506
the promoter of Glo1 harbours an nuclear factor kappaB-responsive element, indicating a link between inflammation and reduced Glo1 expression
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troglitazone treatment (0.025-0.1 mM) reduces glyoxalase I protein expression in glioma
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maximum expression at the exponential growth phase
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the expression of GLO1 is induced following treatment with Ca2+ and is dependent on the mitogen-activated protein kinase Hog1 protein and the Msn2/Msn4 transcription factors, the Ca2+-induced expression of GLO1 is enhanced in the presence of FK506
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the expression of GLO1 is induced following treatment with Ca2+ and is dependent on the mitogen-activated protein kinase Hog1 protein and the Msn2/Msn4 transcription factors, the Ca2+-induced expression of GLO1 is enhanced in the presence of FK506
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