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PNAS Plus: Live cell imaging shows reversible assembly of the TatA component of the twin-arginine protein transport system

机译:PNAS Plus:活细胞成像显示双精氨酸蛋白转运系统中TatA组分的可逆组装

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摘要

The twin-arginine translocation (Tat) machinery transports folded proteins across the cytoplasmic membrane of bacteria and the thylakoid membrane of chloroplasts. It has been inferred that the Tat translocation site is assembled on demand by substrate-induced association of the protein TatA. We tested this model by imaging YFP-tagged TatA expressed at native levels in living Escherichia coli cells in the presence of low levels of the TatA paralogue TatE. Under these conditions the TatA-YFP fusion supports full physiological Tat transport activity. In agreement with the TatA association model, raising the number of transport-competent substrate proteins within the cell leads to an increase in the number of large TatA complexes present. Formation of these complexes requires both a functional TatBC substrate receptor and the transmembrane proton motive force (PMF). Removing the PMF causes TatA complexes to dissociate, except in strains with impaired Tat transport activity. Based on these observations we propose that TatA assembly reaches a critical point at which oligomerization can be reversed only by substrate transport. In contrast to TatA-YFP, the oligomeric states of TatB-YFP and TatC-YFP fusions are not affected by substrate or the PMF, although TatB-YFP oligomerization does require TatC.
机译:双精氨酸易位(Tat)机械将折叠的蛋白质转运穿过细菌的细胞质膜和叶绿体的类囊体膜。已经推断出Tat易位位点是通过底物诱导的蛋白质TatA缔合而按需组装的。我们通过在低水平的TatA旁系同源TatE存在下,在活的大肠杆菌细胞中以天然水平表达的YFP标签的TatA成像来测试该模型。在这些条件下,TatA-YFP融合体支持完整的Tat生理转运活性。与TatA关联模型相一致,增加细胞内具有运输能力的底物蛋白质的数量会导致存在的大型TatA复合物的数量增加。这些复合物的形成需要功能性的TatBC底物受体和跨膜质子动力(PMF)。除去PMF会导致TatA复合物解离,除非在Tat转运活性受损的菌株中。基于这些观察结果,我们建议TatA组装达到临界点,在该临界点,仅通过底物转运即可逆转寡聚。与TatA-YFP相比,TatB-YFP和TatC-YFP融合体的低聚状态不受底物或PMF的影响,尽管TatB-YFP的低聚化确实需要TatC。

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