Smith Sarah M, Yarwood Andrew, Fleck Roland A, Robinson Colin, Smith Corinne J
School of Life Sciences, University of Warwick, Coventry CV4 7AL, U.K.
JEOL (UK) Ltd, Welwyn Garden City AL7 1LT, U.K.
Biochem J. 2017 Apr 19;474(9):1495-1508. doi: 10.1042/BCJ20160952.
The twin-arginine translocation (Tat) system is an integral membrane protein complex that accomplishes the remarkable feat of transporting large, fully folded polypeptides across the inner membrane of bacteria, into the periplasm. In , Tat comprises three membrane proteins: TatA, TatB and TatC. How these proteins arrange themselves in the inner membrane to permit passage of Tat substrates, whilst maintaining membrane integrity, is still poorly understood. TatA is the most abundant component of this complex and facilitates assembly of the transport mechanism. We have utilised immunogold labelling in combination with array tomography to gain insight into the localisation and distribution of the TatA protein in cells. We show that TatA exhibits a uniform distribution throughout the inner membrane of and that altering the expression of TatBC shows a previously uncharacterised distribution of TatA in the inner membrane. Array tomography was used to provide our first insight into this altered distribution of TatA in three-dimensional space, revealing that this protein forms linear clusters in the inner membrane of upon increased expression of TatBC. This is the first indication that TatA organisation in the inner membrane alters in response to changes in Tat subunit stoichiometry.
双精氨酸转运(Tat)系统是一种整合膜蛋白复合物,它能将大型、完全折叠的多肽穿过细菌内膜,转运至周质空间,这一过程堪称壮举。在细菌中,Tat由三种膜蛋白组成:TatA、TatB和TatC。目前对于这些蛋白质如何在内膜中排列,以允许Tat底物通过,同时维持膜的完整性,仍知之甚少。TatA是该复合物中含量最丰富的成分,有助于转运机制的组装。我们利用免疫金标记结合阵列断层成像技术,深入了解TatA蛋白在细胞中的定位和分布。我们发现,TatA在细菌内膜中呈现均匀分布,并且改变TatB和TatC的表达会导致TatA在内膜中出现此前未被描述的分布情况。阵列断层成像技术首次让我们得以洞察TatA在三维空间中的这种分布变化,结果显示,当TatB和TatC的表达增加时,该蛋白在细菌内膜中形成线性簇。这首次表明,内膜中TatA的组织方式会随着Tat亚基化学计量比的变化而改变。