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Distribution of bacterial DNA repair proteins and their co-occurrence with immune systems. | LitMetric

Distribution of bacterial DNA repair proteins and their co-occurrence with immune systems.

Cell Rep

Laboratory of Biochemistry, Wageningen University, 6708 WE Wageningen, the Netherlands. Electronic address:

Published: January 2025

AI Article Synopsis

  • Bacteria have various DNA repair mechanisms to keep their genomes intact, but identifying these proteins is tricky due to their similarities.
  • A new search strategy helps identify and analyze DNA repair proteins, particularly those involved in RecA-dependent homologous recombination, revealing common proteins like RecA and SSB across many species.
  • The study finds that some DNA repair proteins are often found alongside immune system components, suggesting a potential link, but no immune system is entirely dependent on a single DNA repair protein, indicating a complex relationship between these systems in bacteria.

Article Abstract

Bacteria encode various DNA repair pathways to maintain genome integrity. However, the high degree of homology between DNA repair proteins or their domains hampers accurate identification. Here, we describe a stringent search strategy to identify DNA repair proteins and provide a systematic analysis of taxonomic distribution and co-occurrence of DNA repair proteins involved in RecA-dependent homologous recombination. Our results reveal the widespread presence of RecA, SSB, and RecOR proteins and phyla-specific distribution for the DNA repair complexes RecBCD, AddAB, and AdnAB. Furthermore, we report co-occurrences of DNA repair proteins with immune systems, including specific CRISPR-Cas subtypes, prokaryotic Argonautes (pAgos), dGTPases, GAPS2, and Wadjet. Our results imply that while certain DNA repair proteins and immune systems might function in conjunction, no immune system strictly relies on a specific DNA repair protein. As such, these findings offer an updated perspective on the distribution of DNA repair systems and their connection to immune systems in bacteria.

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Source
http://dx.doi.org/10.1016/j.celrep.2024.115110DOI Listing

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