Literature DB >> 23680108

Expression and activity of recombinant proaerolysin derived from Aeromonas hydrophila cultured from diseased channel catfish.

Dunhua Zhang1, Julia W Pridgeon, Phillip H Klesius.   

Abstract

Aerolysin is one of the putative toxins in extracellular products (ECP) produced by Aeromonas hydrophila, an important pathogen of catfish. To better understand the molecular mechanism and mode of action of this toxin, proaerolysin-coding gene was cloned from the genomic DNA of an A. hydrophila strain, cultured from diseased channel catfish, and heterologously expressed in E. coli. Functional recombinant proaerolysin was obtained, revealing some unique properties. The purified recombinant proaerolysin was inactive but could be activated by treatment with furin, trypsin, and ECP although different treatments produced different cleavage profiles and resulted in differential hemolytic and cytotoxic activities. The highest activity was observed from aerolysin processed by furin while treatment of proaerolysin with trypsin and ECP resulted in reduced activities. The unprocessed proaerolysin, though not hemolytic in vitro, had the same cytopathic effect on cultured walking catfish gill cells as the furin-processed had. In in vivo assay, the recombinant proaerolysin was found to be lethal to catfish when injected via intraperitoneal (IP) route. The lethal toxicity was acute and dose-dependent, as observed in IP injection of live A. hydrophila. This is the first recombinant proaerolysin confirmed to be a virulence factor; the recombinant protein could be used to further evaluate virulence, pathogenicity and antigenicity associated with A. hydrophila infection. Published by Elsevier B.V.

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Year:  2013        PMID: 23680108     DOI: 10.1016/j.vetmic.2013.04.023

Source DB:  PubMed          Journal:  Vet Microbiol        ISSN: 0378-1135            Impact factor:   3.293


  4 in total

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Journal:  Science       Date:  2022-06-17       Impact factor: 63.714

2.  Thymol Protects Channel Catfish from Aeromonas hydrophila Infection by Inhibiting Aerolysin Expression and Biofilm Formation.

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3.  New Insights Into Biomphalysin Gene Family Diversification in the Vector Snail Biomphalaria glabrata.

Authors:  Silvain Pinaud; Guillaume Tetreau; Pierre Poteaux; Richard Galinier; Cristian Chaparro; Damien Lassalle; Anaïs Portet; Elodie Simphor; Benjamin Gourbal; David Duval
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4.  Implication of lateral genetic transfer in the emergence of Aeromonas hydrophila isolates of epidemic outbreaks in channel catfish.

Authors:  Mohammad J Hossain; Geoffrey C Waldbieser; Dawei Sun; Nancy K Capps; William B Hemstreet; Kristen Carlisle; Matt J Griffin; Lester Khoo; Andrew E Goodwin; Tad S Sonstegard; Steven Schroeder; Karl Hayden; Joseph C Newton; Jeffery S Terhune; Mark R Liles
Journal:  PLoS One       Date:  2013-11-20       Impact factor: 3.240

  4 in total

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