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Glycine dehydrogenase (decarboxylating)

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Protein-coding gene in the species Homo sapiens

GLDC
Identifiers
AliasesGLDC, GCE, GCSP, HYGN1, Glycine dehydrogenase, glycine decarboxylase
External IDsOMIM: 238300; MGI: 1341155; HomoloGene: 141; GeneCards: GLDC; OMA:GLDC - orthologs
Gene location (Human)
Chromosome 9 (human)
Chr.Chromosome 9 (human)
Chromosome 9 (human)Genomic location for GLDCGenomic location for GLDC
Band9p24.1Start6,532,467 bp
End6,645,729 bp
Gene location (Mouse)
Chromosome 19 (mouse)
Chr.Chromosome 19 (mouse)
Chromosome 19 (mouse)Genomic location for GLDCGenomic location for GLDC
Band19 C1|19 24.87 cMStart30,075,847 bp
End30,152,829 bp
RNA expression pattern
Bgee
HumanMouse (ortholog)
Top expressed in
  • right lobe of liver

  • kidney tubule

  • gonad

  • human kidney

  • ventricular zone

  • sural nerve

  • placenta

  • metanephric glomerulus

  • testicle

  • embryo
Top expressed in
  • otic placode

  • otic vesicle

  • yolk sac

  • morula

  • primitive streak

  • morula

  • epiblast

  • left lobe of liver

  • right kidney

  • ciliary body
More reference expression data
BioGPS
More reference expression data
Gene ontology
Molecular function
Cellular component
Biological process
Sources:Amigo / QuickGO
Orthologs
SpeciesHumanMouse
Entrez

2731

104174

Ensembl

ENSG00000178445

ENSMUSG00000024827

UniProt

P23378

Q91W43

RefSeq (mRNA)

NM_000170

NM_138595

RefSeq (protein)

NP_000161

NP_613061

Location (UCSC)Chr 9: 6.53 – 6.65 MbChr 19: 30.08 – 30.15 Mb
PubMed search
Wikidata
View/Edit HumanView/Edit Mouse
glycine decarboxylase
Identifiers
EC no.1.4.4.2
CAS no.37259-67-9
Databases
IntEnzIntEnz view
BRENDABRENDA entry
ExPASyNiceZyme view
KEGGKEGG entry
MetaCycmetabolic pathway
PRIAMprofile
PDB structuresRCSB PDB PDBe PDBsum
Gene OntologyAmiGO / QuickGO
Search
PMCarticles
PubMedarticles
NCBIproteins

Glycine decarboxylase also known as glycine cleavage system P protein or glycine dehydrogenase is an enzyme that in humans is encoded by the GLDC gene.

Reaction

Glycine decarboxylase (EC 1.4.4.2) is an enzyme that catalyzes the following chemical reaction:

glycine + H-protein-lipoyllysine {\displaystyle \rightleftharpoons } H-protein-S-aminomethyldihydrolipoyllysine + CO2

Thus, the two substrates of this enzyme are glycine and H-protein-lipoyllysine, whereas its two products are H-protein-S-aminomethyldihydrolipoyllysine and CO2.

This enzyme belongs to the family of oxidoreductases, specifically those acting on the CH-NH2 group of donors with a disulfide as acceptor. This enzyme participates in glycine, serine and threonine metabolism. It employs one cofactor, pyridoxal phosphate.

Function

Glycine decarboxylase is the P-protein of the glycine cleavage system in eukaryotes. The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor. Carbon dioxide is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein.

Degradation of glycine is brought about by the glycine cleavage system, which is composed of four mitochondrial protein components: P protein (a pyridoxal phosphate-dependent glycine decarboxylase), H protein (a lipoic acid-containing protein), T protein (a tetrahydrofolate-requiring enzyme), and L protein (a lipoamide dehydrogenase).

Clinical significance

Glycine encephalopathy is due to defects in GLDC or AMT of the glycine cleavage system.

References

  1. ^ GRCh38: Ensembl release 89: ENSG00000178445Ensembl, May 2017
  2. ^ GRCm38: Ensembl release 89: ENSMUSG00000024827Ensembl, May 2017
  3. "Human PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
  4. "Mouse PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
  5. Kume A, Koyata H, Sakakibara T, Ishiguro Y, Kure S, Hiraga K (Mar 1991). "The glycine cleavage system. Molecular cloning of the chicken and human glycine decarboxylase cDNAs and some characteristics involved in the deduced protein structures". J Biol Chem. 266 (5): 3323–9. doi:10.1016/S0021-9258(18)49991-7. PMID 1993704.
  6. Kure S, Narisawa K, Tada K (Mar 1991). "Structural and expression analyses of normal and mutant mRNA encoding glycine decarboxylase: three-base deletion in mRNA causes nonketotic hyperglycinemia". Biochem Biophys Res Commun. 174 (3): 1176–82. doi:10.1016/0006-291X(91)91545-N. PMID 1996985.
  7. ^ "Entrez Gene: GLDC glycine dehydrogenase (decarboxylating)".
  8. Kikuchi G (2008). "The glycine cleavage system: reaction mechanism, physiological significance, and hyperglycinemia". Proc. Jpn. Acad. Ser. B Phys. Biol. Sci. 84 (7): 246–63. Bibcode:2008PJAB...84..246K. doi:10.2183/pjab.84.246. PMC 3666648. PMID 18941301.

Further reading

CH-NH2 oxidoreductases (EC 1.4) - primarily amino acid oxidoreductases
1.4.1: NAD/NADP acceptor
1.4.3: oxygen acceptor
1.4.4: disulfide acceptor
1.4.99: other acceptors
Enzymes
Activity
Regulation
Classification
Kinetics
Types
Portal:


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