Target intelligence / Profile preview

UDP-glucuronosyltransferase 1A9 (UGT1A9)

Target
UGT1A9
Molecular classification
Enzyme, Transferase
01

Overview

UDP-glucuronosyltransferase 1A9 is an enzyme primarily expressed in the liver, kidney, colon, esophagus, and small intestine that catalyzes phase II biotransformation reactions known as glucuronidation. This process involves conjugating lipophilic substrates—including many drugs (such as irinotecan), endogenous hormones (like estrogens), bilirubin, eicosanoids, phytochemicals such as ferulic acid and isoflavones—with glucuronic acid. The resulting metabolites are more water-soluble and thus more readily excreted via urine or bile. This enzyme plays a critical role in detoxifying both endogenous substances and xenobiotics. UGT1A9 activity influences drug pharmacokinetics significantly; genetic variation or inhibition/induction can alter exposure to parent compounds or active metabolites—sometimes leading to adverse effects such as increased toxicity from chemotherapeutic agents like SN38/irinotecan. It is regulated at the transcriptional level by nuclear receptors including PPARα and PPARγ. The protein localizes mainly to the endoplasmic reticulum membrane within cells. Overall, UDP-glucuronosyltransferase 1A9 is an essential component of human metabolic defense against potentially harmful compounds through its broad substrate specificity in phase II metabolism.

Other names
UGT1A9UDP-glucuronosyltransferase 1-9UDP-glucuronosyltransferase 1-IGNT1lugP4UDPGT 1-9UGT1*9UGT1IUGT1.9UGT1-09
02

Mechanism of action

Drugs interacting with this target are typically substrates for glucuronidation; the enzyme catalyzes their conjugation with glucuronic acid, increasing water solubility for excretion. Inhibitors may block this process, affecting drug clearance.

03

Biological functions

Drug metabolism (phase II biotransformation)Detoxification of xenobiotics and endogenous compounds (e.g., steroids, bilirubin, hormones)Glucuronidation of estrogens and phytoestrogens (e.g., estradiol, genistein)
04

Disease associations

Cancer (due to metabolism of anticancer drugs like irinotecan/SN38)Cardiovascular disease (via metabolism of cardiovascular drugs and eicosanoids)
05

Safety considerations

Altered activity due to genetic polymorphisms or drug interactions can lead to drug toxicity or reduced efficacy—especially important for narrow therapeutic index drugs like irinotecan.Inhibition/induction by co-administered agents is a concern in polypharmacy settings.
06

Interacting drugs

Irinotecan (via its active metabolite SN38)

3 more in the full profile.

07

Biomarkers

UGT1A9 expression/activity can serve as a biomarker for predicting patient response or toxicity to irinotecan and other drugs extensively metabolized by glucuronidation.Polymorphisms in the gene may also be relevant.

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