Target intelligence / Profile preview

Alpha-hemolysin (Staphylococcus aureus) (Hla)

Target
Hla
Molecular classification
Pore-forming toxin, Bacterial exotoxin, Virulence factor
01

Overview

Alpha-hemolysin (Hla) is a potent pore-forming cytotoxin secreted by Staphylococcus aureus and serves as a major virulence factor in various human infections. It functions by binding to the host cell surface, specifically the metalloproteinase ADAM10, where it oligomerizes into a heptameric prepore that penetrates the lipid bilayer (Source: UniProt P09616). This pore formation leads to the leakage of intracellular contents, subsequent cell lysis, and the induction of pro-inflammatory signaling pathways that contribute to tissue damage in conditions like necrotizing pneumonia and skin infections (Source: PubMed PMID: 24036120). In clinical development, Hla is targeted by neutralizing monoclonal antibodies such as Suvratoxumab and Tosatoxumab, which aim to attenuate bacterial virulence rather than killing the pathogen directly. This anti-virulence strategy is designed to reduce the severity of S. aureus infections and potentially lower the selective pressure for antibiotic resistance (Source: NIH/NCBI PMC5951174). While primarily associated with S. aureus, hemolysins as a class are produced by various bacteria, but the staphylococcal alpha-toxin remains the most prominent target for therapeutic intervention in modern clinical trials.

Other names
Alpha-toxinStaphylococcal alpha-hemolysinHlyAlpha-HL
02

Mechanism of action

Neutralizing monoclonal antibodies bind to the toxin, preventing its attachment to host cell receptors (such as ADAM10) and subsequent heptameric pore formation, thereby protecting host tissues from lysis and inflammation.

03

Biological functions

Cell membrane disruptionPore formationApoptosis inductionPro-inflammatory signalingErythrocyte lysisLeukocyte activation
04

Disease associations

Staphylococcus aureus infectionBacterial pneumoniaSepsisSkin and soft tissue infectionAtopic dermatitis
05

Safety considerations

Strain-specific variability in toxin productionPotential for rapid clearance of neutralizing antibodiesRedundancy of bacterial virulence factors leading to limited efficacy as a monotherapy
06

Interacting drugs

Suvratoxumab

4 more in the full profile.

07

Biomarkers

Alpha-hemolysin serum levelsS. aureus alpha-toxin gene expressionAnti-Hla antibody titers

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