首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >BofA protein inhibits intramembrane proteolysis of pro-sigma(K) in an intercompartmental signaling pathway during Bacillus subtilis sporulation
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BofA protein inhibits intramembrane proteolysis of pro-sigma(K) in an intercompartmental signaling pathway during Bacillus subtilis sporulation

机译:BofA蛋白抑制枯草芽孢杆菌孢子形成过程中室间信号通路中pro-s(K)的膜内蛋白水解

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Bacillus subtilis is a bacterium that undergoes a developmental program of sporulation in response to starvation. At the core of the program are a factors, whose regulated spatiotemporal activation controls much of the gene expression. Activation of pro-sigma(K) in the mother cell compartment involves regulated intramembrane proteolysis (RIP) in response to a signal from the forespore. RIP is a poorly understood process that is conserved in prokaryotes and eukaryotes. Here, we report a powerful system for studying RIP of pro-sigma(K). Escherichia coli was engineered to coexpress the putative membrane-em bedded metalloprotease SpoIVFB with pro-sigma(K) and potential inhibitors of RIP. Overproduction of SpoIVFB and pro-sigma(K) in E. coli allowed accurate and abundant proteolytic processing of pro-sigma(K) with the characteristics expected for SpoIVFB acting as an intramembrane-cleaving protease (I-Clip). Coexpression of BofA in this system led to formation of a BofA-SpoIVFB complex and marked inhibition of pro-sigma(K) processing. Mutational analysis identified amino acids in BofA that are necessary for complex formation and inhibition of processing, leading us to propose that BofA inhibits SpoIVFB metalloprotease activity by providing a metal ligand, analogous to the cysteine switch mechanism of matrix metalloprotease regulation. The approach described herein should be applicable to studies of other RIP events and amenable to developing in vitro assays for I-Clips.
机译:枯草芽孢杆菌是一种响应饥饿而经历孢子形成发育程序的细菌。该程序的核心是一个因素,其调控的时空激活控制着许多基因的表达。母细胞区室中pro-sigma(K)的激活涉及对来自前孢子的信号的调节的膜内蛋白水解(RIP)。 RIP是一个鲜为人知的过程,在原核生物和真核生物中都是保守的。在这里,我们报告一个功能强大的系统,用于研究pro-sigma(K)的RIP。大肠杆菌经过工程改造,可与pro-sigma(K)和潜在的RIP抑制剂共表达推定的膜嵌入金属蛋白酶SpoIVFB。在大肠杆菌中过量生产SpoIVFB和pro-sigma(K)可以对pro-sigma(K)进行准确而丰富的蛋白水解加工,并具有SpoIVFB作为膜内切割蛋白酶(I-Clip)预期的特征。 BofA在此系统中的共表达导致BofA-SpoIVFB复合物的形成并显着抑制pro-sigma(K)加工。突变分析确定了BofA中复杂形成和抑制加工所必需的氨基酸,因此我们提出BofA通过提供金属配体来抑制SpoIVFB金属蛋白酶活性,类似于基质金属蛋白酶调节的半胱氨酸转换机制。本文描述的方法应适用于其他RIP事件的研究,并适合开发I-Clip的体外测定。

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