Suppr超能文献

功能解析 P1 噬菌体类溶菌素蛋白揭示了 P1 裂解系统复杂性的生物学意义。

Functional Dissection of P1 Bacteriophage Holin-like Proteins Reveals the Biological Sense of P1 Lytic System Complexity.

机构信息

Institute of Biochemistry and Biophysics of the Polish Academy of Sciences, 02-106 Warsaw, Poland.

Autonomous Department of Microbiology, Faculty of Agriculture and Biology, Warsaw University of Life Sciences, SGGW, 02-776 Warsaw, Poland.

出版信息

Int J Mol Sci. 2022 Apr 11;23(8):4231. doi: 10.3390/ijms23084231.

Abstract

P1 is a model temperate myovirus. It infects different and can develop lytically or form lysogens. Only some P1 adaptation strategies to propagate in different hosts are known. An atypical feature of P1 is the number and organization of cell lysis-associated genes. In addition to SAR-endolysin Lyz, holin LydA, and antiholin LydB, P1 encodes other predicted holins, LydC and LydD. LydD is encoded by the same operon as Lyz, LydA and LydB are encoded by an unlinked operon, and LydC is encoded by an operon preceding the gene. By analyzing the phenotypes of P1 mutants in known or predicted holin genes, we show that all the products of these genes cooperate with the P1 SAR-endolysin in cell lysis and that LydD is a pinholin. The contributions of holins/pinholins to cell lysis by P1 appear to vary depending on the host of P1 and the bacterial growth conditions. The pattern of morphological transitions characteristic of SAR-endolysin-pinholin action dominates during lysis by wild-type P1, but in the case of mutant it changes to that characteristic of classical endolysin-pinholin action. We postulate that the complex lytic system facilitates P1 adaptation to various hosts and their growth conditions.

摘要

P1 是一种典型的温和噬菌体。它可以感染不同的宿主,并以裂解或溶原的方式进行繁殖。目前只了解到 P1 的一些适应不同宿主进行繁殖的策略。P1 的一个非典型特征是细胞裂解相关基因的数量和组织方式。除了 SAR-内溶素 Lyz、溶菌素 LydA 和抗溶菌素 LydB 外,P1 还编码其他预测的溶菌素 LydC 和 LydD。LydD 与 Lyz 由同一个操纵子编码,LydA 和 LydB 由一个不相关的操纵子编码,而 LydC 则由一个位于基因之前的操纵子编码。通过分析已知或预测的 holin 基因的 P1 突变体的表型,我们表明这些基因的所有产物都与 P1 的 SAR-内溶素协同作用于细胞裂解,并且 LydD 是一种穿孔素。P1 中 holin/pinholin 对细胞裂解的贡献似乎取决于 P1 的宿主和细菌生长条件。在野生型 P1 裂解过程中,SAR-内溶素-穿孔素作用的形态转变模式占主导地位,但在突变体中,它转变为经典内溶素-穿孔素作用的特征。我们假设复杂的裂解系统有助于 P1 适应各种宿主及其生长条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8a8/9025707/947a0cb0c812/ijms-23-04231-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验