New components of the community-based DNA-repair mechanism in Sulfolobales.

microLife Pub Date : 2025-01-20 eCollection Date: 2025-01-01 DOI:10.1093/femsml/uqaf002
Alejandra Recalde, Alexander Wagner, Shamphavi Sivabalasarma, Anastasiya Yurmashava, Nayeli Phycilia Fehr, Rebecca Thurm, Thuong Ngoc Le, Christin Köebler, Bianca Wassmer, Sonja-Verena Albers, Marleen van Wolferen
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Abstract

After exposure to ultraviolet (UV) light, Sulfolobus acidocaldarius cells aggregate in a species-specific manner to exchange DNA and repair double-strand breaks via homologous recombination. The formation of cell-cell interactions is mediated by Ups pili. DNA exchange subsequently occurs through the Crenarchaeal system for exchange of DNA (Ced), which imports DNA. To identify novel players in these processes, we investigated that several genes upregulated after UV exposure, by creating in-frame deletion mutants and performing cell aggregation and DNA exchange assays. This led to the identification of two novel components involved in the Ups and Ced systems: UpsC, a minor pilin of the Ups pili, and CedD, a VirD4-like ATPase essential for DNA import. Altogether, these findings provide new insights into the DNA damage response mechanisms in Sulfolobales.

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"French Phage Network" annual conference-eighth meeting report. Correction to: Compiling a versatile toolbox for inducible gene expression in Methanosarcina mazei. Metagenomic analysis of pristine oil sheds new light on the global distribution of microbial genetic repertoire in hydrocarbon-associated ecosystems. New components of the community-based DNA-repair mechanism in Sulfolobales. Functional characterization of the DUF1127-containing small protein YjiS of Salmonella Typhimurium.
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