A phase-variable capsule is involved in virulence of Campylobacter jejuni 81-176.

Mol Microbiol

Enteric Diseases Department, Naval Medical Research Center, 503 Robert Grant Avenue, Silver Spring, MD 20910, USA.

Published: May 2001

AI Article Synopsis

  • Campylobacter jejuni strain 81-176 produces two types of glycan structures, influenced by the kpsM gene, affecting its surface properties.
  • A mutation in the kpsM gene leads to loss of a high-molecular-weight glycan, which is crucial for serotyping, while making a secondary glycan more noticeable.
  • The kpsM gene is vital not only for maintaining the bacterium's virulence and ability to invade cells but also plays a role in phase variation of the capsule expression, indicating its significance in adapting to immune challenges.

Article Abstract

Campylobacter jejuni strain 81-176 (HS36, 23) synthesizes two distinct glycan structures, as visualized by immunoblotting of proteinase K-digested whole-cell preparations. A site-specific insertional mutant in the kpsM gene results in loss of expression of a high-molecular-weight (HMW) glycan (apparent Mr 26 kDa to > 85 kDa) and increased resolution of a second ladder-like glycan (apparent Mr 26-50 kDa). The kpsM mutant of 81-176 is no longer typeable in either HS23 or HS36 antisera, indicating that the HMW glycan structure is the serodeterminant of HS23 and HS36. Both the kpsM-dependent HMW glycan and the kpsM-independent ladder-like structure appear to be capsular in nature, as both are attached to phospholipid rather than lipid A. Additionally, the 81-176 kpsM gene can complement a deletion in Escherichia coli kpsM, allowing the expression of an alpha2,8 polysialic acid capsule in E. coli. Loss of the HMW glycan in 81-176 kpsM also increases the surface hydrophobicity and serum sensitivity of the bacterium. The kpsM mutant is also significantly reduced in invasion of INT407 cells and reduced in virulence in a ferret diarrhoeal disease model. The expression of the kpsM-dependent capsule undergoes phase variation at a high frequency.

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Source
http://dx.doi.org/10.1046/j.1365-2958.2001.02431.xDOI Listing

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