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Hypoxanthine-guanine phosphoribosyltransferase and Inosine-5'-monophosphate dehydrogenase (HGPRT; IMPDH)

Target
HGPRT; IMPDH
Molecular classification
Enzyme, Transferase, phosphoribosyltransferase, purine salvage enzyme, Oxidoreductase, nucleotide biosynthetic enzyme
01

Overview

Hypoxanthine-guanine phosphoribosyltransferase (HGPRT) is an essential enzyme in the purine salvage pathway, catalyzing the conversion of hypoxanthine to inosine monophosphate (IMP) and guanine to guanosine monophosphate (GMP), thus recycling purine bases from degraded nucleic acids. Deficient HGPRT activity causes Lesch-Nyhan syndrome and hyperuricemia-related pathology, but the enzyme also has important roles in pharmacogenetics as it activates certain cytotoxic drugs. Inosine-5'-monophosphate dehydrogenase (IMPDH) is the rate-limiting enzyme of de novo guanine nucleotide biosynthesis, converting IMP to xanthosine monophosphate (XMP), the precursor for GMP. There are two main isoforms in humans, IMPDH1 and IMPDH2, both critical to maintaining cellular GTP pools necessary for DNA and RNA synthesis, cell proliferation, and immune function. IMPDH is a major therapeutic target in immunosuppression (e.g. transplant medicine) and cancer, and its inhibition leads to cytostatic effects in rapidly dividing cells.

Other names
Hypoxanthine phosphoribosyltransferaseHPRTHPRT1 (gene)EC 2.4.2.8IMP dehydrogenaseIMPDH1IMPDH2inosine monophosphate dehydrogenaseEC 1.1.1.205
02

Mechanism of action

HGPRT is involved in the metabolism of certain prodrugs, such as 6-mercaptopurine, activating them for antileukemic therapy. Drugs targeting IMPDH, such as mycophenolate mofetil and ribavirin, inhibit IMPDH activity, thereby reducing de novo GTP synthesis and suppressing cell proliferation, particularly in rapidly dividing cells (e.g., immune cells, cancer cells). This leads to immunosuppression (via cell cycle arrest and apoptosis induction) and antiviral effects.

03

Biological functions

Purine salvage pathwayRecycling nucleic acid basesCellular nucleotide balanceDe novo guanine nucleotide biosynthesisCellular nucleotide pool maintenanceRegulation of proliferation, DNA/RNA synthesis
04

Disease associations

Lesch-Nyhan syndrome (severe deficiency)Gout, kidney dysfunction, and other purine metabolism disordersCancer (overexpression/alterations drive proliferation)Autoimmune disordersRetinal degeneration (IMPDH1)Neurodevelopmental disorders (IMPDH2)
05

Safety considerations

HGPRT deficiency causes severe neurological and metabolic symptoms (Lesch-Nyhan syndrome): self-injury, gout, renal complicationsDrug-induced toxicity in patients with low HGPRT activity (for example, thiopurine drugs)IMPDH inhibition causes immunosuppression: Increased infection risk and neoplasia risk when inhibited chronically (as with mycophenolate)Potential neurotoxicity and retinopathy with genetic defects (IMPDH1/2)
06

Interacting drugs

No approved drugs directly target HGPRT in humans; some drugs (such as 6-mercaptopurine and azathioprine) are metabolized through this pathway, and HGPRT activity determines sensitivity and toxicity

4 more in the full profile.

07

Biomarkers

HGPRT enzyme activity measurement to diagnose Lesch-Nyhan syndrome and Kelley-Seegmiller syndrome (partial deficiency)Genotyping for HPRT1 mutationsIMPDH expression/activity as a marker in certain cancers and in monitoring mycophenolate treatment outcomes

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