Geranylgeranyltransferase type 1

Macromolecular complex found in Homo sapiens From Wikipedia, the free encyclopedia

Geranylgeranyltransferase type 1 or simply geranylgeranyltransferase is one of the three enzymes in the prenyltransferase group. In specific terms, Geranylgeranyltransferase (GGTase 1) adds a 20-carbon isoprenoid called a geranylgeranyl group to proteins bearing a CaaX motif: a four-amino acid sequence at the carboxyl terminal of a protein. Geranylgeranyltransferase inhibitors are being investigated as anti-cancer agents.[1]

Quick facts GGTase 1 α-subunit (farnesyltransferase, CAAX box), Identifiers ...
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Quick facts GGTase 1 β-subunit (protein geranylgeranyl- transferase type I, β subunit), Identifiers ...
GGTase 1 β-subunit
(protein geranylgeranyl- transferase type I, β subunit)
Identifiers
SymbolPGGT1B
NCBI gene5229
HGNC8895
OMIM602031
PDB1S64
RefSeqNM_005023
UniProtP53609
Other data
EC number2.5.1.59
LocusChr. 5 q23.1
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StructuresSwiss-model
DomainsInterPro
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Function

Prenyltransferases, including geranylgeranyltransferase, posttranslationally modify proteins by adding an isoprenoid lipid called a prenyl group to the carboxyl terminus of the target protein. This process, called prenylation, causes prenylated proteins to become membrane-associated due to the hydrophobic nature of the prenyl group. Most prenylated proteins are involved in cellular signaling, wherein membrane association is critical for function.[1]

Structure

Geranylgeranyltransferase contains two subunits, α and β that are encoded by the FNTA and PGGT1B genes, respectively. Both subunits are composed primarily of alpha helices. Geranylgeranyltransferase coordinates a zinc cation on its β subunit at the lip of the active site. Geranylgeranyltransferase has a hydrophobic binding pocket for geranylgeranyl diphosphate, the lipid donor molecule. All Geranylgeranyltransferase substrates invariably have a cysteine as their fourth-to-last residue. This cysteine, coordinated by the zinc, engages in an SN2 type attack on the geranylgeranyl diphosphate, displacing the diphosphate.[2][3]

See also

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Further reading

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