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The Tat system proofreads FeS protein substrates and directly initiates the disposal of rejected molecules

机译:Tat系统对FeS蛋白底物进行校对并直接启动废弃分子的处置

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摘要

The twin-arginine translocation (Tat) system transports folded proteins across the bacterial plasma membrane, including FeS proteins that receive their cofactors in the cytoplasm. We have studied two Escherichia coli Tat substrates, NrfC and NapG, to examine how, or whether, the system exports only correctly folded and assembled FeS proteins. With NrfC, substitutions in even one of four predicted FeS centres completely block export, indicating an effective proofreading activity. The FeS mutants are rapidly degraded but only if they interact with the Tat translocon; they are stable in a tat deletion strain and equally stable in wild-type cells if the signal peptide twin-arginine motif is removed to block targeting. Basically similar results are obtained with NapG. The Tat apparatus thus proofreads these substrates and directly initiates the turnover of rejected molecules. Turnover of mutated FeS substrates is completely dependent on the TatA/E subunits that are believed to be involved in the late stages of translocation, and we propose that partial translocation triggers substrate turnover within an integrated quality control system for FeS proteins.
机译:双精氨酸易位(Tat)系统将折叠的蛋白质转运到整个细菌质膜上,包括在细胞质中接受辅因子的FeS蛋白质。我们研究了两种大肠杆菌Tat底物NrfC和NapG​​,以检查该系统如何或是否仅输出正确折叠和组装的FeS蛋白。使用NrfC,即使在四个预测的FeS中心之一中进行的替代也完全阻止了出口,表明有效的校对活动。 FeS突变体会快速降解,但前提是它们必须与Tat转录子相互作用。如果去除信号肽双精氨酸基序以阻断靶向作用,它们在tat缺失菌株中稳定,在野生型细胞中同样稳定。使用NapG可获得基本相似的结果。因此,Tat设备对这些底物进行校对并直接启动被拒绝分子的周转。 FeS底物突变的周转率完全取决于TatA / E亚基,据信该TatA / E亚基参与了易位后期,我们提出部分易位触发了FeS蛋白质集成质量控制系统内的底物周转。

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