Target intelligence / Profile preview

Hypoxanthine-guanine phosphoribosyltransferase (HGPRT) (HGPRT)

Target
HGPRT
Molecular classification
Enzyme, Transferase, Glycosyltransferase, Purine salvage enzyme
01

Overview

Hypoxanthine-guanine phosphoribosyltransferase (HGPRT) is a critical metabolic enzyme that facilitates the purine salvage pathway by recycling hypoxanthine and guanine into IMP and GMP, respectively (UniProt P00492). By utilizing 5-phospho-D-ribosyl-1-pyrophosphate (PRPP) as a ribose donor, the enzyme maintains cellular nucleotide pools and prevents the overproduction of uric acid. In humans, mutations in the HPRT1 gene lead to varying degrees of deficiency; a complete loss of activity results in Lesch-Nyhan syndrome, a severe neurogenetic disorder characterized by hyperuricemia, dystonia, and compulsive self-mutilation (StatPearls: Lesch-Nyhan Syndrome). HGPRT is also a vital target in oncology, as it is the primary enzyme required to activate thiopurine prodrugs like 6-mercaptopurine used in the treatment of acute lymphoblastic leukemia. Furthermore, because many protozoan parasites, such as Plasmodium falciparum, lack de novo purine synthesis pathways and rely entirely on salvage, parasitic HGPRT is a major target for the development of selective antimalarial and antiprotozoal drugs (PubMed: 19450131). The enzyme's dual role as a cause of metabolic disease and a gateway for chemotherapy makes it a significant focus of biochemical and clinical research.

Other names
HPRTHPRT1HGPRTaseHypoxanthine phosphoribosyltransferaseGuanine phosphoribosyltransferaseIMP pyrophosphorylaseTransphosphoribosylase
02

Mechanism of action

HGPRT catalyzes the conversion of hypoxanthine and guanine to their respective monophosphates, IMP and GMP, using 5-phosphoribosyl-1-pyrophosphate (PRPP) as a co-substrate (PubMed: 19450131). In the context of pharmacology, HGPRT is responsible for the metabolic activation of thiopurine prodrugs like 6-mercaptopurine and 6-thioguanine into cytotoxic thioguanine nucleotides (TGNs). These active metabolites are subsequently incorporated into DNA and RNA, leading to the inhibition of nucleic acid synthesis and the induction of cell cycle arrest or apoptosis in rapidly dividing cells, such as leukemic blasts (PubChem CID 667490).

03

Biological functions

Purine salvageNucleotide biosynthesisMetabolic regulationUric acid homeostasis
04

Disease associations

Lesch-Nyhan syndromeKelley-Seegmiller syndromeGoutHyperuricemiaLeukemiaMalariaTrypanosomiasis
05

Safety considerations

Genetic deficiency leading to Lesch-Nyhan syndrome (StatPearls)Development of drug resistance via HPRT mutation or downregulation (PubMed: 12094487)Potential for myelosuppression and hepatotoxicity during thiopurine therapy (PubChem CID 667490)
06

Interacting drugs

6-Mercaptopurine

4 more in the full profile.

07

Biomarkers

Erythrocyte HGPRT enzyme activitySerum uric acid levelsHPRT1 gene mutationsIntracellular 6-thioguanine nucleotide (6-TGN) levels

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