Several New Putative Bacterial ADP-Ribosyltransferase Toxins Are Revealed from In Silico Data Mining, Including the Novel Toxin Vorin, Encoded by the Fire Blight Pathogen Erwinia amylovora

Toxins (Basel). 2020 Dec 11;12(12):792. doi: 10.3390/toxins12120792.

Abstract

Mono-ADP-ribosyltransferase (mART) toxins are secreted by several pathogenic bacteria that disrupt vital host cell processes in deadly diseases like cholera and whooping cough. In the last two decades, the discovery of mART toxins has helped uncover the mechanisms of disease employed by pathogens impacting agriculture, aquaculture, and human health. Due to the current abundance of mARTs in bacterial genomes, and an unprecedented availability of genomic sequence data, mART toxins are amenable to discovery using an in silico strategy involving a series of sequence pattern filters and structural predictions. In this work, a bioinformatics approach was used to discover six bacterial mART sequences, one of which was a functional mART toxin encoded by the plant pathogen, Erwinia amylovora, called Vorin. Using a yeast growth-deficiency assay, we show that wild-type Vorin inhibited yeast cell growth, while catalytic variants reversed the growth-defective phenotype. Quantitative mass spectrometry analysis revealed that Vorin may cause eukaryotic host cell death by suppressing the initiation of autophagic processes. The genomic neighbourhood of Vorin indicated that it is a Type-VI-secreted effector, and co-expression experiments showed that Vorin is neutralized by binding of a cognate immunity protein, VorinI. We demonstrate that Vorin may also act as an antibacterial effector, since bacterial expression of Vorin was not achieved in the absence of VorinI. Vorin is the newest member of the mART family; further characterization of the Vorin/VorinI complex may help refine inhibitor design for mART toxins from other deadly pathogens.

Keywords: Erwinia amylovora; agriculture diseases; bacterial toxins; mono-ADP-ribosyltransferase toxins; toxin-antitoxin.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • ADP Ribose Transferases / genetics*
  • ADP Ribose Transferases / isolation & purification
  • ADP Ribose Transferases / toxicity
  • Amino Acid Sequence
  • Bacterial Toxins / genetics*
  • Bacterial Toxins / isolation & purification
  • Bacterial Toxins / toxicity
  • Computational Biology / methods*
  • Computer Simulation*
  • Data Mining / methods*
  • Erwinia amylovora / genetics*
  • Plant Diseases / genetics
  • Tandem Mass Spectrometry / methods

Substances

  • Bacterial Toxins
  • ADP Ribose Transferases