Wiedemann N, Pfanner N, Ryan M T
Institut für Biochemie und Molekularbiologie, Universität Freiburg, Hermann-Herder-Strasse 7, D-79104 Freiburg, Germany.
EMBO J. 2001 Mar 1;20(5):951-60. doi: 10.1093/emboj/20.5.951.
The ADP/ATP carrier (AAC) is a major representative of mitochondrial preproteins lacking an N-terminal presequence. AAC contains targeting information in each of its three modules, which has led to a search for the dominant targeting region. An alternative, not yet tested model would be that several distinct targeting signals function simultaneously in import of the preprotein. We report that the three AAC modules cooperate in binding to the receptor Tom70 such that three Tom70 dimers are recruited to one preprotein. The modules are transferred to the import pore in a stepwise manner and cooperate again in the accumulation of AAC in the general import pore complex. AAC can cross the outer membrane with an internal segment first, i.e. in a loop formation. Each module of AAC is required for dimerization in the inner membrane. We propose a new concept for import of the hydrophobic carrier proteins into mitochondria where multiple signals cooperate in receptor recruitment, outer membrane translocation via loop formation and assembly in the inner membrane.
ADP/ATP载体(AAC)是缺乏N端前导序列的线粒体前体蛋白的主要代表。AAC的三个模块各自都包含靶向信息,这引发了对主要靶向区域的探寻。另一种尚未经过验证的模型是,几种不同的靶向信号在该前体蛋白的导入过程中同时发挥作用。我们报告称,AAC的三个模块协同与受体Tom70结合,从而将三个Tom70二聚体招募到一个前体蛋白上。这些模块以逐步的方式转移到导入孔中,并在AAC在一般导入孔复合物中的积累过程中再次协同作用。AAC可以首先通过内部片段穿过外膜,即以环的形式。AAC的每个模块都是内膜中二聚化所必需的。我们提出了一个关于疏水载体蛋白导入线粒体的新概念,即多个信号在受体招募、通过环形成进行外膜转运以及内膜组装过程中协同作用。