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Actin cross-linking domain of Aeromonas hydrophila repeat in toxin A (RtxA) induces host cell rounding and apoptosis
Authors:Giovanni Suarez  Bijay K Khajanchi  Johanna C Sierra  Tatiana E Erova  Jian Sha  Ashok K Chopra
Institution:Department of Microbiology & Immunology, University of Texas Medical Branch, Galveston, TX 77555, USA.
Abstract:The repeat in toxin (Rtx) of an environmental isolate ATCC 7966 of Aeromonas hydrophila consists of six genes (rtxACHBDE) organized in an operon similar to the gene organization found for the Rtx of the Vibrio species. The first gene in this operon (rtxA) encodes an exotoxin in vibrios, while other genes code for proteins needed for proper activation of RtxA and in secretion of this toxin from Vibrio cholerae. However, the RtxA of ATCC 7966, as well as from the clinical isolate SSU of A. hydrophila, was exclusively expressed and produced during co-infection of this pathogen with the host, e.g., HeLa cells, indicating that rtxA gene expression required host cell contact. Within the RtxA, an actin cross-linking domain (ACD) exists and to investigate the functionality of this domain, several truncated versions of ACD were generated to discern its minimal biological active region. Such genetically modified genes encoding ACD, which were truncated on either the NH(2) or the COOH terminal, as well as on both ends, were expressed from a bidirectional promoter of the pBI-enhanced green fluorescent protein (EGFP) vector in a HeLa-Tet-Off cell system. We demonstrated that only the full-length ACD of RtxA from A. hydrophila catalyzed the covalent cross-linking of the host cellular actin, whereas the ACD truncated on the NH(2), COOH or both ends did not exhibit such actin cross-linking characteristics. Further, we showed that the full-length ACD of A. hydrophila RtxA disrupted the actin cytoskeleton of HeLa cells, resulting in their rounding phenotype. Finally, our data provided evidence that the full-length ACD of RtxA induced host cell apoptosis. Our study is the first to report that A. hydrophila possesses a functional RtxA having an ACD that contributes to the host cell apoptosis, and hence could represent a potential virulence factor of this emerging human pathogen.
Keywords:Rtx  repeat in toxin  ACD  actin cross-linking domain  EGFP  enhanced green fluorescent protein  Act  Aeromonas cytotoxic enterotoxin  T1SS  type 1 secretion system  T2SS  type 2 secretion system  T3SS  type 3 secretion system  T6SS  type 6 secretion system  ADP  adenosine diphosphate  GAP  GTPase-activating protein  VgrG1  valine–glycine-repeat G1 protein family  VIP-2  vegetative insecticidal protein-2 domain  Hcp  hemolysin-coregulated protein  RID  Rho-GTPase inactivation domain  CPD  autocatalytic cysteine protease domain  MARTX  multifunctional autoprocessing repeat in toxin  IPTG  isopropyl-1-thiogalactopyranoside  rACD  recombinant ACD  MOI  multiplicity of infection  SDS  sodium-dodecyl-sulfate  PAGE  polyacrylamide gel electrophoresis  ECL  enhanced chemiluminescence  7-AAD  7-amino actinomycin D  EDTA  ethylenediaminotetraacetic acid  ABTS  2  2″-Azino-bis[3-ethylbenzthiazoline-6-sulfonic acid]  aa  amino acid  TCA  trichloroacetic acid  HUS  hemolytic uremic syndrome
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