Bessonneau Pascal, Besson Véronique, Collinson Ian, Duong Franck
Laboratoire Transports et Signalisations Cellulaires, IBBMC-CNRS UMR 8619, Université de Paris XI, Bâtiment 430, Orsay 91405, France.
EMBO J. 2002 Mar 1;21(5):995-1003. doi: 10.1093/emboj/21.5.995.
Escherichia coli preprotein translocase comprises a membrane-embedded trimeric complex of SecY, SecE and SecG. Previous studies have shown that this complex forms ring-like assemblies, which are thought to represent the preprotein translocation channel across the membrane. We have analyzed the functional state and the quaternary structure of the SecYEG translocase by employing cross-linking and blue native gel electrophoresis. The results show that the SecYEG monomer is a highly dynamic structure, spontaneously and reversibly associating into dimers. SecG-dependent tetramers and higher order SecYEG multimers can also exist in the membrane, but these structures form at high SecYEG concentration or upon overproduction of the complex only. The translocation process does not affect the oligomeric state of the translocase and arrested preproteins can be trapped with SecYEG or SecYE dimers. Dissociation of the dimer into a monomer by detergent induces release of the trapped preprotein. These results provide direct evidence that preproteins cross the bacterial membrane, associated with a translocation channel formed by a dimer of SecYEG.
大肠杆菌前体蛋白转位酶由SecY、SecE和SecG组成的膜嵌入三聚体复合物构成。先前的研究表明,该复合物形成环状组装体,被认为代表跨膜的前体蛋白转位通道。我们通过交联和蓝色非变性凝胶电泳分析了SecYEG转位酶的功能状态和四级结构。结果表明,SecYEG单体是一种高度动态的结构,能自发且可逆地缔合形成二聚体。SecG依赖的四聚体和更高阶的SecYEG多聚体也可存在于膜中,但这些结构仅在高SecYEG浓度或复合物过量表达时形成。转位过程不影响转位酶的寡聚状态,停滞的前体蛋白可被SecYEG或SecYE二聚体捕获。去污剂将二聚体解离为单体可诱导被困前体蛋白的释放。这些结果提供了直接证据,表明前体蛋白穿过细菌膜,与由SecYEG二聚体形成的转位通道相关联。