Popov-Celeketić Dusan, Mapa Koyeli, Neupert Walter, Mokranjac Dejana
Munich Center for Integrated Protein Science, Institute for Physiological Chemistry, University of Munich, Munich, Germany.
EMBO J. 2008 May 21;27(10):1469-80. doi: 10.1038/emboj.2008.79. Epub 2008 Apr 17.
The TIM23 (translocase of the mitochondrial inner membrane) complex mediates translocation of preproteins across and their insertion into the mitochondrial inner membrane. How the translocase mediates sorting of preproteins into the two different subcompartments is poorly understood. In particular, it is not clear whether association of two operationally defined parts of the translocase, the membrane-integrated part and the import motor, depends on the activity state of the translocase. We established conditions to in vivo trap the TIM23 complex in different translocation modes. Membrane-integrated part of the complex and import motor were always found in one complex irrespective of whether an arrested preprotein was present or not. Instead, we detected different conformations of the complex in response to the presence and, importantly, the type of preprotein being translocated. Two non-essential subunits of the complex, Tim21 and Pam17, modulate its activity in an antagonistic manner. Our data demonstrate that the TIM23 complex acts as a single structural and functional entity that is actively remodelled to sort preproteins into different mitochondrial subcompartments.
TIM23(线粒体内膜转位酶)复合物介导前体蛋白穿过线粒体内膜并插入其中。目前对于该转位酶如何介导前体蛋白分选至两个不同的亚区室了解甚少。特别是,尚不清楚转位酶两个在功能上定义的部分,即膜整合部分和输入马达之间的关联是否取决于转位酶的活性状态。我们建立了在体内捕获处于不同转位模式的TIM23复合物的条件。无论是否存在停滞的前体蛋白,复合物的膜整合部分和输入马达始终存在于一个复合物中。相反,我们检测到复合物因存在正在转位的前体蛋白以及重要的是前体蛋白的类型而呈现不同的构象。该复合物的两个非必需亚基Tim21和Pam17以拮抗方式调节其活性。我们的数据表明,TIM23复合物作为一个单一的结构和功能实体,会被积极重塑以将前体蛋白分选至不同的线粒体亚区室。