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Helicobacter pylori membrane protein (or, more specifically, Helicobacter pylori outer membrane protein, for OMPs) (No universal abbreviation; individual families use abbreviations such as Hop (Helicobacter outer membrane porin), Hor (Hop-related), Hof (Helicobacter outer membrane family), Hom (Helicobacter outer membrane))

Target
No universal abbreviation; individual families use abbreviations such as Hop (Helicobacter outer membrane porin), Hor (Hop-related), Hof (Helicobacter outer membrane family), Hom (Helicobacter outer membrane)
Molecular classification
Porin (e.g., Hop proteins function as porins), Adhesin (many OMPs are adhesins), Lipoprotein, Transporter (some are involved in transport/efflux), Virulence factor (encompasses adhesins and secreted effectors), Efflux pump component
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Overview

Helicobacter pylori membrane proteins comprise a heterogeneous group including lipoproteins, porins, adhesins, and efflux pumps that localize to the bacterial inner and outer membrane[10]. These proteins play critical roles in the bacterium’s ability to adhere to and invade gastric epithelial cells, mediate nutrient transport, interact with host immune defenses, and contribute to bacterial virulence[2][10][5]. Several families are well-defined: the Hop family (porin/adhesin, e.g., HopA–HopE), BabA/BabB (Lewis b antigen-binding adhesins), CagA (Type IV secretion system effector), and Hom/Hof/Hor groups, each with structure-function relationships tied to pathogenesis[3][4][7][8]. H. pylori membrane proteins underpin the organism’s role in chronic gastric inflammation, ulceration, and cancer, and they are the focus of targeted drug discovery and vaccine research[5][10].

Other names
Helicobacter pylori outer membrane proteinH. pylori OMPHop protein (HopA–HopE, BabA/BabB, HomA/HomB, HofA–HofH, etc.)
02

Mechanism of action

Inhibition of membrane protein function (e.g., porin/adhesin blockade reduces bacterial colonization) Disruption of outer membrane structure (leads to bacterial death) Blockade of efflux pumps (potentially increases antibiotic efficacy)

03

Biological functions

Bacterial adhesion to host epithelium (mediated by adhesins such as BabA/BabB)Nutrient and molecule transport (porins act as passive diffusion channels)Immune evasionMaintenance of membrane integrity and structureVirulence and pathogenicity (contribute to host interaction and disease progression)Signal transduction (certain effectors, e.g., CagA)
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Disease associations

Infection (Helicobacter pylori colonization of gastric mucosa)Cancer (especially gastric cancer risk)Inflammation (drives chronic gastritis and ulceration)Other: Potential involvement in autoimmune processes due to molecular mimicry
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Safety considerations

Antigenic variability of OMPs complicates vaccine design and specificity of targeted therapiesDrug resistance, partly mediated by membrane protein changes affecting efflux and permeability
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Interacting drugs

Antibiotics (e.g., amoxicillin, clarithromycin, metronidazole target H. pylori, some OMPs may affect drug entry/efflux)

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07

Biomarkers

BabA/BabB (expression correlates with virulence and disease severity)CagA (presence indicates higher oncogenic risk)OipA, HomA, HomB (expression can inform on pathogenesis/strain differences)

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