Habib Shukry J, Waizenegger Thomas, Niewienda Agathe, Paschen Stefan A, Neupert Walter, Rapaport Doron
Institut für Physiologische Chemie, Universität München, 81377 Munich, Germany.
J Cell Biol. 2007 Jan 1;176(1):77-88. doi: 10.1083/jcb.200602050. Epub 2006 Dec 26.
beta-Barrel proteins constitute a distinct class of mitochondrial outer membrane proteins. For import into mitochondria, their precursor forms engage the TOM complex. They are then relayed to the TOB complex, which mediates their insertion into the outer membrane. We studied the structure-function relationships of the core component of the TOB complex, Tob55. Tob55 precursors with deletions in the N-terminal domain were not affected in their targeting to and insertion into the mitochondrial outer membrane. Replacement of wild-type Tob55 by these deletion variants resulted in reduced growth of cells, and mitochondria isolated from such cells were impaired in their capacity to import beta-barrel precursors. The purified N-terminal domain was able to bind beta-barrel precursors in a specific manner. Collectively, these results demonstrate that the N-terminal domain of Tob55 recognizes precursors of beta-barrel proteins. This recognition may contribute to the coupling of the translocation of beta-barrel precursors across the TOM complex to their interaction with the TOB complex.
β-桶状蛋白构成了线粒体外膜蛋白的一个独特类别。为了导入线粒体,它们的前体形式与转位酶外膜孔道(TOM)复合体结合。然后它们被传递到外膜β-桶状蛋白插入酶(TOB)复合体,该复合体介导它们插入外膜。我们研究了TOB复合体的核心组分Tob55的结构-功能关系。N端结构域有缺失的Tob55前体在靶向和插入线粒体外膜方面没有受到影响。用这些缺失变体替代野生型Tob55导致细胞生长减缓,并且从这些细胞中分离出的线粒体在导入β-桶状前体的能力方面受损。纯化的N端结构域能够以特定方式结合β-桶状前体。总的来说,这些结果表明Tob55的N端结构域识别β-桶状蛋白的前体。这种识别可能有助于β-桶状前体跨TOM复合体的转运与其与TOB复合体的相互作用之间的偶联。