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Overview

Uniprot IDP16083
Protein NameRibosyldihydronicotinamide dehydrogenase [quinone]
Gene NameNQO2
OrganismHomo sapiens

Kla Sites from experimental identification

Position Flanking peptide
5 ***MAGKKVLIVYAH

Function

The enzyme apparently serves as a quinone reductase in connection with conjugation reactions of hydroquinones involved in detoxification pathways as well as in biosynthetic processes such as the vitamin K-dependent gamma-carboxylation of glutamate residues in prothrombin synthesis

Protein Sequence

10 MAGKKVLIVY 20 AHQEPKSFNG 30 SLKNVAVDEL 40 SRQGCTVTVS 50 DLYAMNLEPR 60 ATDKDITGTL 70 SNPEVFNYGV 80 ETHEAYKQRS 90 LASDITDEQK 100 KVREADLVIF 110 QFPLYWFSVP 120 AILKGWMDRV 130 LCQGFAFDIP 140 GFYDSGLLQG 150 KLALLSVTTG 160 GTAEMYTKTG 170 VNGDSRYFLW 180 PLQHGTLHFC 190 GFKVLAPQIS 200 FAPEIASEEE 210 RKGMVAAWSQ 220 RLQTIWKEEP 230 IPCTAHWHFG Q

Gene Ontology

Classification GO ID Description
Cellular Component GO:0005829 cytosol
Cellular Component GO:0070062 extracellular exosome
Molecular Function GO:0031404 chloride ion binding
Molecular Function GO:0001512 dihydronicotinamide riboside quinone reductase activity
Molecular Function GO:0009055 electron transfer activity
Molecular Function GO:0071949 FAD binding
Molecular Function GO:1904408 melatonin binding
Molecular Function GO:0003955 NAD(P)H dehydrogenase (quinone) activity
Molecular Function GO:0016491 oxidoreductase activity
Molecular Function GO:0016661 oxidoreductase activity, acting on other nitrogenous compounds as donors
Molecular Function GO:0042803 protein homodimerization activity
Molecular Function GO:1905594 resveratrol binding
Molecular Function GO:0008270 zinc ion binding
Biological Process GO:1901662 quinone catabolic process

Reference

[1] Yang Z, Yan C, Ma J, Peng P, Ren X et al.. Lactylome analysis suggests lactylation-dependent mechanisms of metabolic adaptation in hepatocellular carcinoma.. Nat Metab 5(1):61-79. 2023 Jan. PMID: 36593272.