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I 类 holin P2 Y 的功能分析。

Functional analysis of a class I holin, P2 Y.

机构信息

Center for Phage Technology, Texas A&M University, College Station, Texas, USA.

出版信息

J Bacteriol. 2013 Mar;195(6):1346-55. doi: 10.1128/JB.01986-12. Epub 2013 Jan 18.

Abstract

Y is the putative holin gene of the paradigm coliphage P2 and encodes a 93-amino-acid protein. Y is predicted to be an integral membrane protein that adopts an N-out C-in membrane topology with 3 transmembrane domains (TMDs) and a highly charged C-terminal cytoplasmic tail. The same features are observed in the canonical class I lambda holin, the S105 protein of phage lambda, which controls lysis by forming holes in the plasma membrane at a programmed time. S105 has been the subject of intensive genetic, cellular, and biochemical analyses. Although Y is not related to S105 in its primary structure, its characterization might prove useful in discerning the essential traits for holin function. Here, we used physiological and genetic approaches to show that Y exhibits the essential holin functional criteria, namely, allele-specific delayed-onset lethality and sensitivity to the energization of the membrane. Taken together, these results suggest that class I holins share a set of unusual features that are needed for their remarkable ability to program the end of the phage infection cycle with precise timing. However, Y holin function requires the integrity of its short cytoplasmic C-terminal domain, unlike for S105. Finally, instead of encoding a second translational product of Y as an antiholin, as shown for lambda S107, the P2 lysis cassette encodes another predicted membrane protein, LysA, which is shown here to have a Y-specific antiholin character.

摘要

Y 是典范大肠杆菌噬菌体 P2 的假定 holin 基因,编码一个 93 个氨基酸的蛋白质。Y 被预测为一种整合膜蛋白,采用 N 出 C 入的膜拓扑结构,具有 3 个跨膜结构域(TMD)和一个带高电荷的细胞质 C 末端尾巴。在经典的 I 类 lambda holin 中也观察到了相同的特征,lambda 噬菌体的 S105 蛋白,它通过在预定时间在质膜上形成孔来控制裂解。S105 一直是遗传、细胞和生化分析的主题。尽管 Y 在其一级结构上与 S105 没有关系,但它的特征可能有助于辨别 holin 功能的基本特征。在这里,我们使用生理和遗传方法表明,Y 表现出基本 holin 功能标准,即等位基因特异性延迟致死和对膜能量的敏感性。总之,这些结果表明,I 类 holin 具有一组不寻常的特征,这是它们具有精确定时编程噬菌体感染周期结束的非凡能力所必需的。然而,Y holin 功能需要其短的细胞质 C 末端结构域的完整性,而不像 S105 那样。最后,与 lambda S107 所示的那样,P2 裂解盒没有编码 Y 的第二个翻译产物作为反 holin,而是编码另一种预测的膜蛋白 LysA,本文证明它具有 Y 特异性的反 holin 特征。

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