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在枯草芽孢杆菌中,外套形态发生蛋白 SpoVID 和 CotE 之间的物理相互作用对于孢子包被是必需的。

Physical interaction between coat morphogenetic proteins SpoVID and CotE is necessary for spore encasement in Bacillus subtilis.

机构信息

New York University, Center for Genomics and Systems Biology, Department of Biology, New York, New York, USA.

出版信息

J Bacteriol. 2012 Sep;194(18):4941-50. doi: 10.1128/JB.00914-12. Epub 2012 Jul 6.

Abstract

Endospore formation by Bacillus subtilis is a complex and dynamic process. One of the major challenges of sporulation is the assembly of a protective, multilayered, proteinaceous spore coat, composed of at least 70 different proteins. Spore coat formation can be divided into two distinct stages. The first is the recruitment of proteins to the spore surface, dependent on the morphogenetic protein SpoIVA. The second step, known as encasement, involves the migration of the coat proteins around the circumference of the spore in successive waves, a process dependent on the morphogenetic protein SpoVID and the transcriptional regulation of individual coat genes. We provide genetic and biochemical evidence supporting the hypothesis that SpoVID promotes encasement of the spore by establishing direct protein-protein interactions with other coat morphogenetic proteins. It was previously demonstrated that SpoVID directly interacts with SpoIVA and the inner coat morphogenetic protein, SafA. Here, we show by yeast two-hybrid and pulldown assays that SpoVID also interacts directly with the outer coat morphogenetic protein, CotE. Furthermore, by mutational analysis, we identified a specific residue in the N-terminal domain of SpoVID that is essential for the interaction with CotE but dispensable for the interaction with SafA. We propose an updated model of coat assembly and spore encasement that incorporates several physical interactions between the principal coat morphogenetic proteins.

摘要

枯草芽孢杆菌的芽孢形成是一个复杂而动态的过程。芽孢形成的主要挑战之一是组装一个保护性的、多层的、蛋白质质的芽孢外壳,由至少 70 种不同的蛋白质组成。芽孢外壳的形成可以分为两个明显的阶段。第一阶段是依赖于形态发生蛋白 SpoIVA 将蛋白质募集到芽孢表面。第二阶段,即包裹阶段,涉及到在芽孢的圆周上以连续的波次迁移外壳蛋白,这个过程依赖于形态发生蛋白 SpoVID 和个别外壳基因的转录调控。我们提供了遗传和生化证据,支持这样的假设,即 SpoVID 通过与其他外壳形态发生蛋白建立直接的蛋白质-蛋白质相互作用来促进芽孢的包裹。先前已经证明 SpoVID 与 SpoIVA 和内壳形态发生蛋白 SafA 直接相互作用。在这里,我们通过酵母双杂交和下拉实验表明,SpoVID 还与外壳形态发生蛋白 CotE 直接相互作用。此外,通过突变分析,我们确定了 SpoVID 的 N 端结构域中的一个特定残基,该残基对于与 CotE 的相互作用是必需的,但对于与 SafA 的相互作用是可有可无的。我们提出了一个更新的外壳组装和芽孢包裹模型,该模型整合了主要外壳形态发生蛋白之间的几个物理相互作用。

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本文引用的文献

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