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TatA 旁系同源物 TatE 的结构表明, Tat 蛋白转运体具有结构均一的形式,可转运不同直径的折叠蛋白。

Structure of TatA paralog, TatE, suggests a structurally homogeneous form of Tat protein translocase that transports folded proteins of differing diameter.

机构信息

School of Life Sciences, University of Warwick, Coventry CV4 7AL, United Kingdom.

出版信息

J Biol Chem. 2012 Mar 2;287(10):7335-44. doi: 10.1074/jbc.M111.326355. Epub 2011 Dec 21.

Abstract

The twin-arginine translocation (Tat) system transports folded proteins across bacterial and plant thylakoid membranes. Most current models for the translocation mechanism propose the coalescence of a substrate-binding TatABC complex with a separate TatA complex. In Escherichia coli, TatA complexes are widely believed to form the translocation pore, and the size variation of TatA has been linked to the transport of differently sized substrates. Here, we show that the TatA paralog TatE can substitute for TatA and support translocation of Tat substrates including AmiA, AmiC, and TorA. However, TatE is found as much smaller, discrete complexes. Gel filtration and blue native electrophoresis suggest sizes between ∼50 and 110 kDa, and single-particle processing of electron micrographs gives size estimates of 70-90 kDa. Three-dimensional models of the two principal TatE complexes show estimated diameters of 6-8 nm and potential clefts or channels of up to 2.5 nm diameter. The ability of TatE to support translocation of the 90-kDa TorA protein suggests alternative translocation models in which single TatA/E complexes do not contribute the bulk of the translocation channel. The homogeneity of both the TatABC and the TatE complexes further suggests that a discrete Tat translocase can translocate a variety of substrates, presumably through the use of a flexible channel. The presence and possible significance of double- or triple-ring TatE forms is discussed.

摘要

双精氨酸转运(Tat)系统将折叠蛋白运输穿过细菌和植物类囊体膜。目前大多数转运机制模型都提出,底物结合的 TatABC 复合物与单独的 TatA 复合物融合。在大肠杆菌中,TatA 复合物被广泛认为形成转运孔,并且 TatA 的大小变化与不同大小的底物的转运有关。在这里,我们表明 TatA 旁系同源物 TatE 可以替代 TatA,并支持 Tat 底物的转运,包括 AmiA、AmiC 和 TorA。然而,TatE 被发现是更小的离散复合物。凝胶过滤和蓝色 native 电泳表明其大小在 50-110 kDa 之间,单颗粒处理电子显微镜图像给出的大小估计为 70-90 kDa。两个主要 TatE 复合物的三维模型显示估计直径为 6-8nm,并且具有高达 2.5nm 直径的潜在裂缝或通道。TatE 能够支持 90kDa TorA 蛋白的转运表明了替代转运模型,其中单个 TatA/E 复合物不会贡献大部分转运通道。TatABC 和 TatE 复合物的均一性进一步表明,离散的 Tat 转运体可以转运多种底物,可能通过使用灵活的通道。讨论了双环或三环 TatE 形式的存在和可能的意义。

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