Target intelligence / Profile preview

Helicobacter pylori urease complex (HPU) (HPU)

Target
HPU
Molecular classification
Enzyme, Hydrolase, Nickel-dependent metalloenzyme, Amidohydrolase
01

Overview

The Helicobacter pylori urease complex is a large, nickel-dependent metalloenzyme that plays a critical role in the pathogenesis of H. pylori by enabling the bacterium to survive the acidic environment of the stomach (UniProt, P14916). The enzyme complex is typically composed of two subunits, UreA and UreB, arranged in a dodecameric (alpha6-beta6) structure (PubMed, PMC493354). Its primary biological function is the hydrolysis of urea into ammonia and carbon dioxide, which neutralizes gastric acid and creates a habitable microenvironment for the pathogen (StatPearls, 2023). This neutralization is essential for gastric colonization and contributes to the development of gastritis, peptic ulcers, and gastric adenocarcinoma (NIH, NBK544250). In clinical practice, the urease complex is the basis for the Urea Breath Test (UBT), a non-invasive gold standard for detecting active infection (PubMed, 28944195). While several inhibitors like acetohydroxamic acid have been developed to target this enzyme, their clinical use is often restricted due to toxicity, making the complex a significant focus for novel antimicrobial drug design (PubMed, 11544352).

Other names
UreaseUrea amidohydrolaseNickel-dependent ureaseH. pylori urease
02

Mechanism of action

Inhibition of the urease enzyme prevents the hydrolysis of urea into ammonia, thereby failing to neutralize gastric acid and hindering the survival and colonization of Helicobacter pylori in the stomach (StatPearls, 2023). Competitive inhibitors like acetohydroxamic acid bind to the nickel ions in the active site, blocking substrate access (PubMed, PMC139104).

03

Biological functions

Urea hydrolysisAcid neutralizationBacterial colonizationNitrogen metabolismpH homeostasis
04

Disease associations

InfectionGastritisPeptic ulcer diseaseGastric cancerMALT lymphoma
05

Safety considerations

Neurological side effects (with acetohydroxamic acid)Hematological toxicityTeratogenicityDevelopment of antibiotic resistance in H. pyloriPotential disruption of gastric microbiome
06

Interacting drugs

Acetohydroxamic acid

5 more in the full profile.

07

Biomarkers

Urea Breath Test (UBT)Rapid Urease Test (RUT)Stool antigen testAnti-urease antibodies

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