HCSGD entry for GLO1


1. General information

Official gene symbolGLO1
Entrez ID2739
Gene full nameglyoxalase I
Other gene symbolsGLOD1 GLYI
Links to Entrez GeneLinks to Entrez Gene

2. Neighbors in the network

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This gene isn't in Literature mining network.

3. Gene ontology annotation

GO ID

GO term

Evidence

Category

GO:0004462Lactoylglutathione lyase activityIDAmolecular_function
GO:0005737CytoplasmTAScellular_component
GO:0005975Carbohydrate metabolic processIEAbiological_process
GO:0006357Regulation of transcription from RNA polymerase II promoterIEAbiological_process
GO:0006749Glutathione metabolic processIEAbiological_process
GO:0008270Zinc ion bindingIDAmolecular_function
GO:0009438Methylglyoxal metabolic processIEAbiological_process
GO:0030316Osteoclast differentiationISSbiological_process
GO:0043066Negative regulation of apoptotic processIDA IMP TASbiological_process
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4. Expression levels in datasets

  • Meta-analysis result

p-value upp-value downFDR upFDR down
0.98578435850.01893169710.99999024730.2699356446

  • Individual experiment result
    ( "-" represent NA in the specific microarray platform )

Data sourceUp or downLog fold change
GSE11954Down-0.2836614436
GSE13712_SHEARDown-0.3947209033
GSE13712_STATICDown-0.2590022127
GSE19018Up0.3969084219
GSE19899_A1Down-0.5645018493
GSE19899_A2Down-0.4536571275
PubMed_21979375_A1Down-0.5405167069
PubMed_21979375_A2Down-0.4784484067
GSE35957Down-0.2812957388
GSE36640Down-0.4813147181
GSE54402Down-0.0832747297
GSE9593Down-0.0925817653
GSE43922Down-0.2870018666
GSE24585Down-0.2034239143
GSE37065Down-0.1488895906
GSE28863_A1Up0.1619061958
GSE28863_A2Up0.4238129684
GSE28863_A3Down-0.2908723145
GSE28863_A4Down-0.2424626134
GSE48662Down-0.4098617104

5. Regulation relationships with compounds/drugs/microRNAs

  • Compounds

Not regulated by compounds

  • Drugs

Name

Drug

Accession number

GlutathioneDB00143 NUTR00029 | EXPT01650
IndomethacinDB00328 APRD00109
S-P-NitrobenzyloxycarbonylglutathioneDB03130 EXPT01625
S-(N-Hydroxy-N-Iodophenylcarbamoyl)GlutathioneDB03330 EXPT01593
Beta-MercaptoethanolDB03345 EXPT02882 | DB03131
S-Benzyl-GlutathioneDB03602 EXPT01647
S-HexylglutathioneDB04132 EXPT01664
methyl 4-(2,3-dihydroxy-5-methylphenoxy)-2-hydroxy-6-methylbenzoateDB08179 -

  • MicroRNAs

  • mirTarBase

MiRNA_name

mirBase ID

miRTarBase ID

Experiment

Support type

References (Pubmed ID)

hsa-miR-193b-3pMIMAT0002819MIRT016416MicroarrayFunctional MTI (Weak)20304954
hsa-miR-7-5pMIMAT0000252MIRT025781MicroarrayFunctional MTI (Weak)19073608
hsa-let-7b-5pMIMAT0000063MIRT032365ProteomicsFunctional MTI (Weak)18668040
hsa-miR-222-3pMIMAT0000279MIRT046725CLASHFunctional MTI (Weak)23622248
hsa-miR-183-5pMIMAT0000261MIRT047098CLASHFunctional MTI (Weak)23622248
hsa-miR-92a-3pMIMAT0000092MIRT049258CLASHFunctional MTI (Weak)23622248
hsa-miR-17-5pMIMAT0000070MIRT050980CLASHFunctional MTI (Weak)23622248
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  • mirRecord
No target information from mirRecord

6. Text-mining results about the gene

Gene occurances in abstracts of cellular senescence-associated articles: 4 abstracts the gene occurs.


PubMed ID of the article

Sentenece the gene occurs

22188542MG-mediated damage is countered by glutathione-dependent metabolism by Glo1 (glyoxalase 1)
22188542It is not known, however, whether Glo1 has stress-responsive up-regulation to counter periods of high MG concentration or dicarbonyl stress
22188542We identified a functional ARE (antioxidant-response element) in the 5'-untranslated region of exon 1 of the mammalian Glo1 gene
22188542We conclude that dicarbonyl stress is countered by up-regulation of Glo1 in the Nrf2 stress-responsive system, protecting protein and DNA from increased damage and preserving cell function
22001178Glyoxalase I retards renal senescence
22001178We hypothesized that carbonyl stress causes senescence and investigated the possible role of glyoxalase I (GLO1), which detoxifies precursors of advanced glycation end products in the aging process of the kidney
22001178We used GLO1 overexpression or knockdown in primary renal proximal tubular epithelial cells to investigate the effect of GLO1 on cellular senescence
22001178Furthermore, we confirmed the association of decreased GLO1 enzymatic activity and age-dependent deterioration of renal function in aged humans with GLO1 mutation
22001178These findings indicate that GLO1 ameliorates carbonyl stress to retard renal senescence
1756776Eight enzyme loci (G6PD, PGM1, PGM3, PepA, PGD, ADA, GLO1, and ME), proved to be informative in establishing unique allozyme genetic signatures for all of the cell strains established from the same species and from the same organ
3994738It was metabolized by glyoxalase I with reduced glutathione to S-glyceroyl glutathione which was subsequently enzymatically hydrolyzed to reduced glutathione and glycerate by glyoxalase II
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