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Lipids assist the membrane insertion of a BAM-independent outer membrane protein

机译:脂质有助于膜插入Bam无关的外膜蛋白

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Like several other large, multimeric bacterial outer membrane proteins (OMPs), the assembly of the Klebsiella oxytoca OMP PulD does not rely on the universally conserved β-barrel assembly machinery (BAM) that catalyses outer membrane insertion. The only other factor known to interact with PulD prior to or during outer membrane targeting and assembly is the cognate chaperone PulS. Here, in vitro translation-transcription coupled PulD folding demonstrated that PulS does not act during the membrane insertion of PulD, and engineered in vivo site-specific cross-linking between PulD and PulS showed that PulS binding does not prevent membrane insertion. In vitro folding kinetics revealed that PulD is atypical compared to BAM-dependent OMPs by inserting more rapidly into membranes containing E. coli phospholipids than into membranes containing lecithin. PulD folding was fast in di C14:0-phosphatidylethanolamine liposomes but not di C14:0-phosphatidylglycerol liposomes, and in di C18:1-phosphatidylcholine liposomes but not in di C14:1-phosphatidylcholine liposomes. These results suggest that PulD efficiently exploits the membrane composition to complete final steps in insertion and explain how PulD can assemble independently of any protein-assembly machinery. Lipid-assisted assembly in this manner might apply to other large OMPs whose assembly is BAM-independent.
机译:与其他几个大的多聚体细菌外膜蛋白(OMP)一样,Klebsiella ocktoca Omp焊浆的组装不依赖于催化外膜插入的普遍保守的β-桶组件机械(BAM)。已知在外膜靶向和组装之前或期间,唯一已知的其他因素与外膜靶向和组装期间的脉冲物是同源伴侣脉冲。这里,在体外转换耦合胶折叠的情况下证明脉冲在浆料的插入期间不采用,并且在脉冲和脉冲之间的体内特异性交联的工程化的工程化表明脉冲结合不会防止膜插入。体外折叠动力学显示,通过将较快的扫描膜插入含有卵磷脂的膜,与BAM依赖的孔相比,浆料与BAM依赖性OMP相比是非纯的。 DI C 14:0 -phosphatidyl乙醇胺脂质体,但非C 14:0 -physphatidyl甘油脂质体,以及在di c 18:1 14:1 -pholidyl胆碱脂质体中。这些结果表明,焊浆有效利用膜组合物以完成插入中的最终步骤,并说明浆材如何独立于任何蛋白质组装机械组装。以这种方式的脂质辅助组件可能适用于其他大OMP,其组装是ambound的。

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