首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >An unusual signal peptide facilitates late steps in the biogenesis of a bacterial autotransporter.
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An unusual signal peptide facilitates late steps in the biogenesis of a bacterial autotransporter.

机译:不寻常的信号肽促进细菌自转运蛋白的生物发生的后期步骤。

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Bacterial autotransporters are proteins that use a C-terminal porin-like domain to facilitate the transport of an upstream "passenger domain" across the outer membrane. Although autotransporters are translocated across the inner membrane (IM) via the Sec pathway, some of them contain exceptionally long signal peptides distinguished by a unique N-terminal sequence motif. In this study, we used the Escherichia coli O157:H7 autotransporter EspP as a model protein to investigate the function of the unusual signal peptides. We found that removal of the N-terminal motif or replacement of the EspP signal peptide did not affect translocation of the protein across the IM. Remarkably, modification of the signal peptide caused EspP to misfold in the periplasm and blocked transport of the passenger domain across the outer membrane. Further analysis suggested that the EspP signal peptide transits slowly through the Sec machinery. Based on these results, we propose that the unusual signal peptides not only function as targeting signals, but also prevent misfolding of the passenger domain in the periplasm by transiently tethering it to the IM.
机译:细菌自转运蛋白是使用C端孔蛋白样结构域来促进上游“乘客结构域”跨外膜运输的蛋白质。尽管自转运蛋白通过Sec途径跨内膜(IM)转运,但其中一些含有以独特的N端序列基序为特征的异常长的信号肽。在这项研究中,我们使用大肠杆菌O157:H7自转运蛋白EspP作为模型蛋白来研究异常信号肽的功能。我们发现去除N末端基序或替换EspP信号肽不会影响蛋白质跨IM的转运。值得注意的是,信号肽的修饰导致EspP在周质中错误折叠,并阻止了乘客结构域穿过外膜的转运。进一步的分析表明,EspP信号肽通过Sec机器缓慢传播。基于这些结果,我们提出异常信号肽不仅起到靶向信号的作用,而且还通过将其暂时束缚在IM上来防止周质中过客结构域的错误折叠。

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