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

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          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.

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          Author and article information

          Journal
          Mol Cell
          Molecular cell
          Elsevier BV
          1097-4164
          1097-2765
          December 17 2020
          : 80
          : 6
          Affiliations
          [1 ] Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio av. 7, 10257 Vilnius, Lithuania.
          [2 ] Laboratory of Algology and Microbial Ecology, Nature Research Centre, Akademijos str. 2, 08412 Vilnius, Lithuania.
          [3 ] Institute of Biotechnology, Life Sciences Center, Vilnius University, Sauletekio av. 7, 10257 Vilnius, Lithuania. Electronic address: siksnys@ibt.lt.
          Article
          S1097-2765(20)30834-0
          10.1016/j.molcel.2020.11.034
          33290744
          3099c84a-212d-41fb-a966-912200161db4
          Copyright © 2020 Elsevier Inc. All rights reserved.
          History

          ATP homeostasis,cyanobacteria,adenylylation,RNase,CRISPR-Cas,Aphanizomenon flos-aquae,tRNA cleavage,nucleotidyltransferase

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