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Updated: Jun 14, 2026

Identification of Antibacterial Immunity Proteins in Escherichia coli using MALDI-TOF-TOF-MS/MS and Top-Down Proteomic Analysis
Published on: May 23, 2021
ClpX contributes to innate defense peptide resistance and virulence phenotypes of Bacillus anthracis
Shauna M McGillivray1, Celia M Ebrahimi, Nathan Fisher
1Department of Pediatrics, University of California San Diego, La Jolla, CA 92093-0687, USA.
Abstract:
Bacillus anthracis is a National Institute of Allergy and Infectious Diseases Category A priority pathogen and the causative agent of the deadly disease anthrax. We applied a transposon mutagenesis system to screen for novel chromosomally encoded B. anthracis virulence factors. This approach identified ClpX, the regulatory ATPase subunit of the ClpXP protease, as essential for both the hemolytic and proteolytic phenotypes surrounding colonies of B. anthracis grown on blood or casein agar media, respectively. Deletion of clpX attenuated lethality of B. anthracis Sterne in murine subcutaneous and inhalation infection models, and markedly reduced in vivo survival of the fully virulent B. anthracis Ames upon intraperitoneal challenge in guinea pigs. The extracellular proteolytic activity dependent upon ClpX function was linked to degradation of cathelicidin antimicrobial peptides, a front-line effector of innate host defense. B. anthracis lacking ClpX were rapidly killed by cathelicidin and alpha-defensin antimicrobial peptides and lysozyme in vitro. In turn, mice lacking cathelicidin proved hyper-susceptible to lethal infection with wild-type B. anthracis Sterne, confirming cathelicidin to be a critical element of innate defense against the pathogen. We conclude that ClpX is an important factor allowing B. anthracis to subvert host immune clearance mechanisms, and thus represents a novel therapeutic target for prevention or therapy of anthrax, a foremost biodefense concern.
Insights
Bacillus anthracis ClpX protease is essential for anthrax virulence. Targeting ClpX may offer new therapies against this biodefense threat by blocking pathogen immune evasion.
Area of Science:
- Microbiology
- Immunology
- Biodefense
Background:
- Bacillus anthracis is a Category A priority pathogen causing anthrax.
- Understanding B. anthracis virulence factors is crucial for biodefense.
Purpose of the Study:
- To identify novel chromosomally encoded virulence factors of B. anthracis.
- To investigate the role of identified factors in B. anthracis pathogenesis and host immune evasion.
Main Methods:
- Transposon mutagenesis screen to identify virulence factors.
- Gene deletion studies to assess virulence attenuation.
- In vitro assays to evaluate antimicrobial peptide resistance.
- Murine and guinea pig infection models to determine lethality and survival.
Main Results:
- ClpX, a subunit of the ClpXP protease, was identified as essential for B. anthracis hemolytic and proteolytic activity.
- Deletion of clpX significantly attenuated B. anthracis lethality in murine models and reduced survival in guinea pigs.
- ClpX facilitates degradation of cathelicidin antimicrobial peptides, aiding B. anthracis evasion of innate immunity.
- B. anthracis lacking ClpX were susceptible to antimicrobial peptides and lysozyme in vitro.
Conclusions:
- ClpX is a critical virulence factor enabling B. anthracis to subvert host immune clearance mechanisms.
- ClpX represents a novel therapeutic target for anthrax prevention and treatment.
- Cathelicidin is a key component of innate host defense against B. anthracis infection.
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