Molecular mechanism of plasmid elimination by the DdmDE defense system

Author:

Loeff Luuk1ORCID,Adams David W.2ORCID,Chanez Christelle1ORCID,Stutzmann Sandrine2,Righi Laurie2,Blokesch Melanie2ORCID,Jinek Martin1ORCID

Affiliation:

1. Department of Biochemistry, University of Zurich, Zurich, Switzerland.

2. Laboratory of Molecular Microbiology, Global Health Institute, School of Life Sciences, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

Abstract

Seventh-pandemic Vibrio cholerae strains contain two pathogenicity islands that encode the DNA defense modules DdmABC and DdmDE. In this study, we used cryogenic electron microscopy to determine the mechanistic basis for plasmid defense by DdmDE. The helicase-nuclease DdmD adopts an autoinhibited dimeric architecture. The prokaryotic Argonaute protein DdmE uses a DNA guide to target plasmid DNA. The structure of the DdmDE complex, validated by in vivo mutational studies, shows that DNA binding by DdmE triggers disassembly of the DdmD dimer and loading of monomeric DdmD onto the nontarget DNA strand. In vitro studies indicate that DdmD translocates in the 5′-to-3′ direction, while partially degrading the plasmid DNA. These findings provide critical insights into the mechanism of DdmDE systems in plasmid elimination.

Publisher

American Association for the Advancement of Science (AAAS)

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