HEPN-MNT Toxin-Antitoxin System: The HEPN Ribonuclease Is Neutralized by OligoAMPylation

Mol Cell. 2020 Dec 17;80(6):955-970.e7. doi: 10.1016/j.molcel.2020.11.034. Epub 2020 Dec 7.

Abstract

Prokaryotic toxin-antitoxin (TA) systems are composed of a toxin capable of interfering with key cellular processes and its neutralizing antidote, the antitoxin. Here, we focus on the HEPN-MNT TA system encoded in the vicinity of a subtype I-D CRISPR-Cas system in the cyanobacterium Aphanizomenon flos-aquae. We show that HEPN acts as a toxic RNase, which cleaves off 4 nt from the 3' end in a subset of tRNAs, thereby interfering with translation. Surprisingly, we find that the MNT (minimal nucleotidyltransferase) antitoxin inhibits HEPN RNase through covalent di-AMPylation (diadenylylation) of a conserved tyrosine residue, Y109, in the active site loop. Furthermore, we present crystallographic snapshots of the di-AMPylation reaction at different stages that explain the mechanism of HEPN RNase inactivation. Finally, we propose that the HEPN-MNT system functions as a cellular ATP sensor that monitors ATP homeostasis and, at low ATP levels, releases active HEPN toxin.

Keywords: ATP homeostasis; Aphanizomenon flos-aquae; CRISPR-Cas; RNase; adenylylation; cyanobacteria; nucleotidyltransferase; tRNA cleavage.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenosine Monophosphate / genetics
  • Antidotes / chemistry
  • Antitoxins / genetics*
  • Antitoxins / metabolism
  • Aphanizomenon / chemistry
  • Aphanizomenon / genetics
  • Bacterial Toxins / genetics*
  • CRISPR-Cas Systems / genetics
  • Nucleotidyltransferases / genetics
  • Nucleotidyltransferases / metabolism
  • Ribonucleases / genetics*
  • Ribonucleases / metabolism
  • Toxin-Antitoxin Systems / genetics*
  • Tyrosine / genetics

Substances

  • Antidotes
  • Antitoxins
  • Bacterial Toxins
  • Adenosine Monophosphate
  • Tyrosine
  • Nucleotidyltransferases
  • Ribonucleases

Supplementary concepts

  • Aphanizomenon flos-aquae