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Identification of an amphipathic peptide sensor of the Bacillus subtilis fluid membrane microdomains

机译:枯草芽孢杆菌液体膜微膜的两亲性肽传感器的鉴定

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Regions of increased fluidity are newly found bacterial membrane microdomains that are composed of short, unsaturated and branched fatty acyl chains in a fluid and disordered state. Currently, little is known about how proteins are recruited and localized to these membrane domains. Here, we identify a short amphipathic α-peptide in a previously unreported crystal structure and show that it is responsible for peripheral localization of the phosphate acyltransferase PlsX to the fluid microdomains in Bacillus subtilis. Mutations disrupting the amphipathic interaction or increasing the nonpolar interaction are found to redistribute the protein to the cytosol or other part of the plasma membrane, causing growth defects. These results reveal a mechanism of peripheral membrane sensing through optimizing nonpolar interaction with the special lipids in the microdomains. This finding shows that the fluid membrane microdomains may take advantage of their unique lipid environment as a means of recruiting and organizing proteins. Yiping Jiang et al. show that a short amphipathic α-peptide ensures bacterial growth by guiding the phosphate acyltransferase PlsX to the fluid microdomains of bacterial membrane. This study provides insight into how the fluid membrane microdomains use their lipid environment to organize membrane proteins.
机译:增加流动性的区域是新发现的细菌膜微膜,其由流体和无序状态下的短,不饱和和支链脂肪酰基链组成。目前,关于如何将蛋白质招募和局部化为这些膜结构域的知识。在这里,我们在先前未报告的晶体结构中鉴定一个短的两亲性α-肽,并表明它负责磷酸酰酰转移酶PLSX对枯草芽孢杆菌中的流体微膜的外周定位。发现破坏两亲相互作用或增加非极性相互作用的突变将蛋白质重新分配给胞浆或质膜的其他部分,引起生长缺陷。这些结果揭示了通过优化与微米瘤中的特殊脂质的非极性相互作用的外周膜感测的机制。该发现表明,流体膜微膜可以利用它们独特的脂质环境作为募集和组织蛋白质的手段。 y江等。表明,通过将磷酸酰基转移酶PLSX引导到细菌膜​​的流体微粒子,通过将磷酸酰酰基转移酶PLSX引导至细菌膜的流体微膜来确保细菌生长。本研究提供了洞察流体膜微摩体如何使用其脂质环境来组织膜蛋白。

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