首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Polypeptide Transport-associated (POTRA) Domains of TpsB Transporters Determine the System Specificity of Two-partner Secretion Systems
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The Polypeptide Transport-associated (POTRA) Domains of TpsB Transporters Determine the System Specificity of Two-partner Secretion Systems

机译:TpsB转运蛋白的多肽运输相关(POTRA)域决定了两个伙伴分泌系统的系统特异性。

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摘要

The two-partner secretion (TPS) systems of Gram-negative bacteria secrete large TpsA exoproteins by a dedicated TpsB transporter in the outer membrane. TpsBs contain an N-terminal module located in the periplasm that includes two polypeptide transport-associated (POTRA) domains. These are thought to initiate secretion of a TpsA by binding its N-terminal secretion signal, called the TPS domain. Neisseria meningitidis encodes up to five TpsA proteins that are secreted via only two TpsB transporters: TpsB1 and TpsB2. Of these two, the TpsB2 recognizes the TPS domains of all TpsAs, despite their sequence diversity. By contrast, the TpsB1 shows a limited recognition of a TPS domain that is shared by two TpsAs. The difference in substrate specificity of the TpsBs enabled us to investigate the role of the POTRA domains in the selection of TPS domains. We tested secretion of TPS domains or full-length TpsAs by TpsB mutants with deleted, duplicated, and exchanged POTRA domains. Exchanging the two POTRA domains of a TpsB resulted in a switch in specificity. Furthermore, exchanging a single POTRA domain showed that each of the two domains contributed to the cargo selection. Remarkably, the order of the POTRA domains could be reversed without affecting substrate selection, but this aberrant order did result in an alternatively processed secretion product. Our results suggest that secretion of a TpsA is initiated by engaging both POTRA domains of a TpsB transporter and that these select the cognate TpsAs for secretion.
机译:革兰氏阴性细菌的两伙伴分泌(TPS)系统通过外膜中的专用TpsB转运蛋白分泌大的TpsA外蛋白。 TpsB包含位于周质中的N末端模块,该模块包含两个多肽运输相关(POTRA)结构域。这些被认为是通过结合TpsA的N端分泌信号(称为TPS域)来引发TpsA分泌的。脑膜炎奈瑟氏球菌最多编码五个TpsA蛋白,这些蛋白仅通过两个TpsB转运蛋白:TpsB1和TpsB2分泌。在这两个中,TpsB2识别所有TpsA的TPS域,尽管它们具有序列多样性。相反,TpsB1对由两个TpsA共享的TPS域的识别有限。 TpsBs底物特异性的差异使我们能够研究POTRA结构域在TPS结构域选择中的作用。我们测试了具有缺失,重复和交换的POTRA域的TpsB突变体对TPS域或全长TpsA的分泌。交换TpsB的两个POTRA结构域导致特异性改变。此外,交换单个POTRA域显示两个域中的每一个都有助于货物选择。值得注意的是,POTRA结构域的顺序可以颠倒而不会影响底物的选择,但是这种异常顺序的确导致了替代处理的分泌产物。我们的结果表明,通过结合TpsB转运蛋白的两个POTRA域来启动TpsA的分泌,并且这些都选择了同源的TpsA进行分泌。

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