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首页> 外文期刊>Journal of Molecular Biology >Interactions between late-acting proteins required for peptidoglycan synthesis during sporulation.
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Interactions between late-acting proteins required for peptidoglycan synthesis during sporulation.

机译:孢子形成过程中肽聚糖合成所需的后作用蛋白之间的相互作用。

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摘要

The requirement of peptidoglycan synthesis for growth complicates the analysis of interactions between proteins involved in this pathway. In particular, the latter steps that involve membrane-linked substrates have proven largely recalcitrant to in vivo analysis. Here, we have taken advantage of the peptidoglycan synthesis that occurs during sporulation in Bacillus subtilis to examine the interactions between SpoVE, a nonessential, sporulation-specific homolog of the well-conserved and essential SEDS (shape elongation, division, and sporulation) proteins, and SpoVD, a nonessential class B penicillin binding protein. We found that localization of SpoVD is dependent on SpoVE and that SpoVD protects SpoVE from in vivo proteolysis. Co-immunoprecipitations and fluorescence resonance energy transfer experiments indicated that SpoVE and SpoVD interact, and co-affinity purification in Escherichia coli demonstrated that this interaction is direct. Finally, we generated a functional protein consisting of an SpoVE-SpoVD fusion and found that a loss-of-function point mutation in either part of the fusion resulted in loss of function of the entire fusion that was not complemented by a wild-type protein. Thus, SpoVE has a direct and functional interaction with SpoVD, and this conclusion will facilitate understanding the essential function that SpoVE and related SEDS proteins, such as FtsW and RodA, play in bacterial growth and division.
机译:肽聚糖合成对生长的需求使该途径中涉及的蛋白质之间相互作用的分析变得复杂。特别地,涉及膜连接的底物的后面的步骤已被证明在体内分析中具有很大的难度。在这里,我们利用枯草芽孢杆菌孢子形成过程中发生的肽聚糖合成来检查SpoVE之间的相互作用,SpoVE是保守的和必不可少的SEDS(形状延伸,分裂和孢子形成)蛋白的非必需的,孢子形成特异性同源物, SpoVD,一种非必需的B类青霉素结合蛋白。我们发现SpoVD的定位取决于SpoVE,并且SpoVD保护SpoVE免受体内蛋白水解作用。共同免疫沉淀和荧光共振能量转移实验表明SpoVE和SpoVD相互作用,而在大肠杆菌中的共亲和纯化表明这种相互作用是直接的。最后,我们产生了一个由SpoVE-SpoVD融合蛋白组成的功能蛋白,发现该融合蛋白任一部分的功能缺失点突变导致整个融合蛋白的功能丧失,而野生型蛋白无法补充该功能。因此,SpoVE与SpoVD具有直接的功能相互作用,这一结论将有助于理解SpoVE和相关SEDS蛋白(例如FtsW和RodA)在细菌生长和分裂中发挥的基本功能。

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