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细菌 DSR2 抗噬菌体防御系统 NADase 的激活机制的结构见解。

Structural insights into activation mechanisms on NADase of the bacterial DSR2 anti-phage defense system.

机构信息

Provincial University Key Laboratory of Cellular Stress Response and Metabolic Regulation and Fujian Key Laboratory of Developmental and Neural Biology, College of Life Sciences, Fujian Normal University, Fuzhou 350117, PR China.

State Key Laboratory of Vaccines for Infectious Diseases, Xiang An Biomedicine Laboratory, School of Life Sciences, School of Public Health, Xiamen University, Xiamen 361102, PR China.

出版信息

Sci Adv. 2024 Aug 2;10(31):eadn5691. doi: 10.1126/sciadv.adn5691. Epub 2024 Jul 31.

Abstract

As a sirtuin (SIR2) family protein, defense-associated sirtuin2 (DSR2) has been demonstrated to participate in bacterial anti-phage resistance via depleting nicotinamide adenine dinucleotide (NAD) of infected cells, which can be activated by tail tube protein (TTP) and inhibited by DSR anti-defense 1 (DSAD1) of diverse phages. However, the regulating mechanism remains elusive. Here, we determined the cryo-electron microscopy structure of apo DSR2, as well as the respective complex structures with TTP and DSAD1. Structural analyses and biochemical studies reveal that DSR2 forms a tetramer with a SIR2 central core and two distinct conformations. Monomeric TTP preferentially binds to the closed conformation of DSR2, inducing conformational distortions on SIR2 tetramer assembly to activate its NADase activity. DSAD1 combines with the open conformation of DSR2, directly or allosterically inhibiting TTP activation on DSR2 NAD hydrolysis. Our findings decipher the detailed molecule mechanisms for DSR2 NADase activity regulation and lay a foundation for in-depth understanding of the DSR2 anti-phage defense system.

摘要

作为 Sirtuin(SIR2)家族蛋白之一,防御相关的 Sirtuin2(DSR2)已被证明通过耗尽感染细胞中的烟酰胺腺嘌呤二核苷酸(NAD)来参与细菌抗噬菌体防御,这种防御可以被尾管蛋白(TTP)激活,也可以被不同噬菌体的 DSR 抗防御 1(DSAD1)抑制。然而,其调控机制仍不清楚。在这里,我们确定了apo DSR2 的低温电子显微镜结构,以及与 TTP 和 DSAD1 的各自复合物结构。结构分析和生化研究表明,DSR2 形成一个具有 SIR2 中心核心和两种不同构象的四聚体。单体 TTP 优先结合 DSR2 的封闭构象,在 SIR2 四聚体组装上诱导构象扭曲,从而激活其 NADase 活性。DSAD1 与 DSR2 的开放构象结合,直接或别构抑制 TTP 对 DSR2 NAD 水解的激活。我们的发现揭示了 DSR2 NADase 活性调控的详细分子机制,为深入了解 DSR2 抗噬菌体防御系统奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bd6/11290490/b50e7f7470f9/sciadv.adn5691-f1.jpg

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