Antonoaea Raluca, Fürst Michaela, Nishiyama Ken-Ichi, Müller Matthias
Institut für Biochemie and Molekularbiologie and Zentrum für Biochemie and Molekulare Zellforschung, Universität Freiburg, Hermann-Herder-Strasse 7, D-79104 Freiburg, Germany.
Biochemistry. 2008 May 20;47(20):5649-56. doi: 10.1021/bi800233w. Epub 2008 Apr 26.
The Sec translocon of Escherichia coli mediates the export of numerous secretory and membrane proteins. To dissect the passage of an exported protein across the Sec translocon into consecutive steps, we generated in vitro translocation intermediates of a polypeptide chain, which by its N-terminus is anchored in the membrane and by its C-terminus tethered to the ribosome. We find that in this situation, the motor protein SecA propagates translocation of a peptide loop across SecYEG prior to the removal of ribosomes. Upon SecA-driven exit from the translocon, this loop is brought into the immediate vicinity of the membrane-anchored, periplasmic chaperone PpiD. Consistent with a coupling between translocation across the SecYEG translocon and folding by periplasmic chaperones, a lack of PpiD retards the release of a translocating outer membrane protein into the periplasm.
大肠杆菌的Sec转运体介导众多分泌蛋白和膜蛋白的输出。为了将输出蛋白穿过Sec转运体的过程分解为连续步骤,我们生成了一条多肽链的体外转运中间体,该多肽链的N端锚定在膜中,C端与核糖体相连。我们发现在这种情况下,动力蛋白SecA在核糖体去除之前推动肽环穿过SecYEG进行转运。在SecA驱动下从转运体退出后,该环被带到膜锚定的周质伴侣蛋白PpiD的紧邻区域。与穿过SecYEG转运体的转运和周质伴侣蛋白的折叠之间的偶联一致,缺乏PpiD会延迟转运中的外膜蛋白释放到周质中。