Division of Molecular Microbiology, College of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.
Mol Microbiol. 2012 Sep;85(5):945-61. doi: 10.1111/j.1365-2958.2012.08151.x. Epub 2012 Jul 13.
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasmic membrane and the plant thylakoid membrane. TatC is the largest and most conserved component of the Tat machinery. It forms a multisubunit complex with TatB and binds the signal peptides of Tat substrates. Here we have taken a random mutagenesis approach to identify substitutions in Escherichia coli TatC that inactivate protein transport. We identify 32 individual amino acid substitutions that abolish or severely compromise TatC activity. The majority of the inactivating substitutions fall within the first two periplasmic loops of TatC. These regions are predicted to have conserved secondary structure and results of extensive amino acid insertion and deletion mutagenesis are consistent with these conserved elements being essential for TatC function. Three inactivating substitutions were identified in the fifth transmembrane helix of TatC. The inactive M205R variant could be suppressed by mutations affecting amino acids in the transmembrane helix of TatB. A physical interaction between TatC helix 5 and the TatB transmembrane helix was confirmed by the formation of a site-specific disulphide bond between TatC M205C and TatB L9C variants. This is the first molecular contact site mapped to single amino acid level between these two proteins.
双精氨酸转运(Tat)系统将折叠蛋白转运穿过原核细胞质膜和植物类囊体膜。TatC 是 Tat 机器的最大和最保守的组件。它与 TatB 形成多亚基复合物,并结合 Tat 底物的信号肽。在这里,我们采用随机诱变方法鉴定了使大肠杆菌 TatC 失活的蛋白质转运的取代。我们鉴定了 32 个单独的氨基酸取代,这些取代完全或严重削弱了 TatC 的活性。大多数失活取代发生在 TatC 的前两个周质环内。这些区域被预测具有保守的二级结构,广泛的氨基酸插入和缺失诱变的结果与这些保守元件对于 TatC 功能至关重要的结果一致。在 TatC 的第五个跨膜螺旋中鉴定出三个失活取代。失活的 M205R 变体可以被影响 TatB 跨膜螺旋中氨基酸的突变所抑制。TatC 螺旋 5 和 TatB 跨膜螺旋之间的物理相互作用通过 TatC M205C 和 TatB L9C 变体之间形成的特异性二硫键得到证实。这是在这两种蛋白质之间以单个氨基酸水平映射的第一个分子接触位点。