Division of Molecular Microbiology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Open Biol. 2017 Aug;7(8). doi: 10.1098/rsob.170091.
The twin-arginine protein transport (Tat) machinery mediates the translocation of folded proteins across the cytoplasmic membrane of prokaryotes and the thylakoid membrane of plant chloroplasts. The Tat system comprises TatC and two additional sequence-related proteins, TatA and TatB. The active translocase is assembled on demand, with substrate-binding at a TatABC receptor complex triggering recruitment and assembly of multiple additional copies of TatA; however, the molecular interactions mediating translocase assembly are poorly understood. A 'polar cluster' site on TatC transmembrane (TM) helix 5 was previously identified as binding to TatB. Here, we use disulfide cross-linking and molecular modelling to identify a new binding site on TatC TM helix 6, adjacent to the polar cluster site. We demonstrate that TatA and TatB each have the capacity to bind at both TatC sites, however this is regulated according to the activation state of the complex. In the resting-state system, TatB binds the polar cluster site, with TatA occupying the TM helix 6 site. However when the system is activated by overproduction of a substrate, TatA and TatB switch binding sites. We propose that this substrate-triggered positional exchange is a key step in the assembly of an active Tat translocase.
双精氨酸蛋白转运(Tat)机制介导了折叠蛋白穿过原核生物细胞质膜和植物叶绿体类囊体膜的转运。Tat 系统包括 TatC 和另外两个序列相关的蛋白 TatA 和 TatB。活性转运酶按需组装,底物结合在 TatABC 受体复合物上触发 TatA 的多个额外拷贝的募集和组装;然而,介导转运酶组装的分子相互作用还知之甚少。先前在 TatC 跨膜(TM)螺旋 5 上鉴定出一个“极性簇”位点,该位点与 TatB 结合。在这里,我们使用二硫键交联和分子建模来鉴定 TatC TM 螺旋 6 上的一个新结合位点,该位点紧邻极性簇位点。我们证明 TatA 和 TatB 都具有结合 TatC 两个位点的能力,但这种结合受到复合物激活状态的调节。在静止状态系统中,TatB 结合极性簇位点,而 TatA 占据 TM 螺旋 6 位点。然而,当通过过度表达底物激活系统时,TatA 和 TatB 切换结合位点。我们提出,这种底物触发的位置交换是活性 Tat 转运酶组装的关键步骤。