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Spatial coupling between DNA replication and mismatch repair in Caulobacter crescentus

Tiancong Chai, Céline Terrettaz, View ORCID ProfileJustine Collier
doi: https://doi.org/10.1101/2020.07.13.200147
Tiancong Chai
Department of Fundamental Microbiology, Faculty of Biology and Medicine, University of Lausanne, Quartier UNIL/Sorge, Lausanne, CH-1015, Switzerland
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Céline Terrettaz
Department of Fundamental Microbiology, Faculty of Biology and Medicine, University of Lausanne, Quartier UNIL/Sorge, Lausanne, CH-1015, Switzerland
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Justine Collier
Department of Fundamental Microbiology, Faculty of Biology and Medicine, University of Lausanne, Quartier UNIL/Sorge, Lausanne, CH-1015, Switzerland
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  • ORCID record for Justine Collier
  • For correspondence: justine.collier@unil.ch
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ABSTRACT

The DNA mismatch repair (MMR) process detects and corrects replication errors in organisms ranging from bacteria to humans. In most bacteria, it is initiated by MutS detecting mismatches and MutL nicking the mismatch-containing DNA strand. Here, we show that MMR reduces the appearance of rifampicin resistances more than a 100-fold in the Caulobacter crescentus Alphaproteobacterium. Using fluorescently-tagged and functional MutS and MutL proteins, live cell microscopy experiments showed that MutS is usually associated with the replisome during the whole S-phase of the C. crescentus cell cycle, while MutL displays an apparently more dynamic association with the replisome. Thus, MMR components appear to use a 1D-scanning mode to search for rare mismatches, although the spatial association between MutS and the replisome is dispensible under standard growth conditions. Conversely, the spatial association of MutL with the replisome appears as critical for MMR in C. crescentus, suggesting a model where the β-sliding clamp licences the endonuclease activity of MutL right behind the replication fork where mismatches are generated. The spatial association between MMR and replisome components may also play a role in speeding up MMR and/or in recognizing which strand needs to be repaired in a variety of Alphaproteobacteria.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted July 13, 2020.
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Spatial coupling between DNA replication and mismatch repair in Caulobacter crescentus
Tiancong Chai, Céline Terrettaz, Justine Collier
bioRxiv 2020.07.13.200147; doi: https://doi.org/10.1101/2020.07.13.200147
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Spatial coupling between DNA replication and mismatch repair in Caulobacter crescentus
Tiancong Chai, Céline Terrettaz, Justine Collier
bioRxiv 2020.07.13.200147; doi: https://doi.org/10.1101/2020.07.13.200147

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