Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA 95616, USA.
J Cell Biol. 2011 Oct 17;195(2):323-40. doi: 10.1083/jcb.201107053. Epub 2011 Oct 10.
To broadly explore mitochondrial structure and function as well as the communication of mitochondria with other cellular pathways, we constructed a quantitative, high-density genetic interaction map (the MITO-MAP) in Saccharomyces cerevisiae. The MITO-MAP provides a comprehensive view of mitochondrial function including insights into the activity of uncharacterized mitochondrial proteins and the functional connection between mitochondria and the ER. The MITO-MAP also reveals a large inner membrane-associated complex, which we term MitOS for mitochondrial organizing structure, comprised of Fcj1/Mitofilin, a conserved inner membrane protein, and five additional components. MitOS physically and functionally interacts with both outer and inner membrane components and localizes to extended structures that wrap around the inner membrane. We show that MitOS acts in concert with ATP synthase dimers to organize the inner membrane and promote normal mitochondrial morphology. We propose that MitOS acts as a conserved mitochondrial skeletal structure that differentiates regions of the inner membrane to establish the normal internal architecture of mitochondria.
为了广泛探索线粒体的结构和功能,以及线粒体与其他细胞途径的通讯,我们在酿酒酵母中构建了一个定量的高密度遗传相互作用图谱(MITO-MAP)。MITO-MAP 提供了对线粒体功能的全面了解,包括对未被描述的线粒体蛋白的活性的深入了解,以及线粒体与 ER 之间的功能联系。MITO-MAP 还揭示了一个大型的内膜相关复合物,我们称之为 MitOS,用于线粒体组织结构,由 Fcj1/Mitofilin 组成,这是一种保守的内膜蛋白,还有另外五个组成部分。MitOS 与内外膜组件物理和功能相互作用,并定位于围绕内膜的扩展结构。我们表明,MitOS 与 ATP 合酶二聚体协同作用,组织内膜并促进正常的线粒体形态。我们提出 MitOS 作为一种保守的线粒体骨架结构,区分内膜区域,以建立线粒体的正常内部结构。