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Structural and functional evidence of bacterial antiphage protection by Thoeris defense system via NAD degradation

机译:通过NAD退化,Thoeris防御系统的细菌抗灰保护的结构和功能证据

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The intense arms race between bacteria and phages has led to the development of diverse antiphage defense systems in bacteria. Unlike well-known restriction-modification and CRISPR-Cas systems, recently discovered systems are poorly characterized. One such system is the Thoeris defense system, which consists of two genes, thsA and thsB. Here, we report structural and functional analyses of ThsA and ThsB. ThsA exhibits robust NAD cleavage activity and a two-domain architecture containing sirtuin-like and SLOG-like domains. Mutation analysis suggests that NAD cleavage is linked to the antiphage function of Thoeris. ThsB exhibits a structural resemblance to TIR domain proteins such as nucleotide hydrolases and Toll-like receptors, but no enzymatic activity is detected in our in vitro assays. These results further our understanding of the molecular mechanism underlying the Thoeris defense system, highlighting a unique strategy for bacterial antiphage resistance via NAD degradation.
机译:细菌和噬菌体之间的强烈军备竞赛导致细菌中不同的抗灰防御系统的发展。与已知的限制性修改和CRISPR-CAS系统不同,最近发现的系统表征不佳。一种这样的系统是Thoeris防御系统,由两个基因,THSA和THSB组成。在这里,我们报告了THSA和THSB的结构和功能分析。 THSA展示强大的NAD裂解活动和一个包含SIRTUIN类似的双域架构和类似滑轨的座位。突变分析表明,NAD切割与Thoeris的抗噬官能进行了联系在一起。 THSB表现出与TIR结构域蛋白质如核苷酸水解酶和损伤的受体的结构相似,但在我们的体外测定中没有检测到酶活性。这些结果进一步了解泰内防御系统的分子机制,突出了通过NAD降解的细菌抗噬菌抗性的独特策略。

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