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Overflow of a hyper-produced secretory protein from the Bacillus sec pathway into the Tat pathway for protein secretion as revealed by proteogenomics

机译:蛋白质组学研究表明,高产的分泌蛋白从芽孢杆菌sec途径向Tat途径的分泌用于蛋白质分泌

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摘要

Bacteria secrete numerous proteins into their environment for growth and survival under complex and ever-changing conditions. The highly different characteristics of secreted proteins pose major challenges to the cellular protein export machinery and, accordingly, different pathways have evolved. While the main secretion (Sec) pathway transports proteins in an unfolded state, the twin-arginine translocation (Tat) pathway transports folded proteins. To date, these pathways were believed to act in strictly independent ways. Here, we have employed proteogenomics to investigate the secretion mechanism of the esterase LipA of Bacillus subtilis, using a serendipi-tously obtained hyper-producing strain. While LipA is secreted Sec-dependently under standard conditions, hyper-produced LipA is secreted predominantly Tat-dependently via an unprecedented overflow mechanism. Two previously identified B. subtilis Tat substrates, PhoD and YwbN, require each a distinct Tat translocase for secretion. In contrast, hyper-produced LipA is transported by both Tat translocases of B. subtilis, showing that they have distinct but overlapping specificities. The identified overflow secretion mechanism for LipA focuses interest on the possibility that secretion pathway choice can be determined by environmental and intracellular conditions. This may provide an explanation for the previous observation that many Sec-depen-dently transported proteins have potential twin-arginine signal peptides for export via the Tat pathway.
机译:细菌会在其环境中分泌大量蛋白质,以在复杂多变的条件下生长和生存。分泌蛋白的高度不同特征对细胞蛋白输出机制提出了重大挑战,因此,已经发展出不同的途径。主要分泌(Sec)途径以未折叠状态运输蛋白质,而双精氨酸易位(Tat)途径运输折叠的蛋白质。迄今为止,据信这些途径以严格独立的方式起作用。在这里,我们利用蛋白质组学研究了使用偶然获得的高产菌株的枯草芽孢杆菌酯酶LipA的分泌机制。在标准条件下,LipA依赖于Sec分泌,而高产量的LipA则通过前所未有的溢出机制主要依赖Tat分泌。之前确定的两种枯草芽孢杆菌Tat底物PhoD和YwbN,每个都需要一个独特的Tat移位酶来分泌。相比之下,高产的LipA被枯草芽孢杆菌的两个Tat转位酶运输,表明它们具有独特但重叠的特异性。已确定的LipA溢出分泌机制将注意力集中在可以通过环境和细胞内条件确定分泌途径选择的可能性上。这可能为以前的观察结果提供了解释,该观察结果表明,许多Sec依赖转运蛋白具有通过Tat途径输出的潜在双精氨酸信号肽。

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