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A Monoclonal Antibody against the C-Terminal Domain of Bacillus cereus Hemolysin II Inhibits HlyII Cytolytic Activity

Authors :
N. N. Rudenko
A. O. Shepelyakovskaya
Alexander S. Solonin
Khanafiy Boziev
Vadim Salyamov
A. V. Siunov
Bogdan S. Melnik
A. V. Zamyatina
A. P. Karatovskaya
Zhanna I. Andreeva-Kovalevskaya
Alexey Nagel
Alexander I. Kolesnikov
Fedor Brovko
Source :
Toxins, Volume 12, Issue 12, Toxins, Vol 12, Iss 806, p 806 (2020)
Publication Year :
2020
Publisher :
Multidisciplinary Digital Publishing Institute, 2020.

Abstract

Bacillus cereus is the fourth most common cause of foodborne illnesses that produces a variety of pore-forming proteins as the main pathogenic factors. B. cereus hemolysin II (HlyII), belonging to pore-forming &beta<br />barrel toxins, has a C-terminal extension of 94 amino acid residues designated as HlyIICTD. An analysis of a panel of monoclonal antibodies to the recombinant HlyIICTD protein revealed the ability of the antibody HlyIIC-20 to inhibit HlyII hemolysis. A conformational epitope recognized by HlyIIC-20 was detected by the peptide phage display method and found to be localized to the C-terminal part of HlyIICTD. The HlyIIC-20 interacted with a monomeric form of HlyII, thus suppressing maturation of the HlyII toxin. Protection efficiencies of various B. cereus strains against HlyII were different and depended on the epitope amino acid composition, as well as, insignificantly, on downstream amino acids. Substitution of L324P and P324L in the hemolysins ATCC14579T and B771, respectively, determined the role of leucine localized to the epitope in suppressing the hemolysis by the antibody. Pre-incubation of HlyIIC-20 with HlyII prevented the death of mice up to an equimolar ratio. A strategy of detecting and neutralizing the toxic activity of HlyII could provide a tool for monitoring and reducing B. cereus pathogenicity.

Details

Language :
English
ISSN :
20726651
Database :
OpenAIRE
Journal :
Toxins
Accession number :
edsair.doi.dedup.....58206089d711f0aad490e4a35d5b8823
Full Text :
https://doi.org/10.3390/toxins12120806