Institut für Biochemie und Molekularbiologie, ZBMZ, Universität Freiburg, 79104 Freiburg, Germany.
Mol Cell Proteomics. 2012 Dec;11(12):1840-52. doi: 10.1074/mcp.M112.021105. Epub 2012 Sep 15.
The intermembrane space (IMS) represents the smallest subcompartment of mitochondria. Nevertheless, it plays important roles in the transport and modification of proteins, lipids, and metal ions and in the regulation and assembly of the respiratory chain complexes. Moreover, it is involved in many redox processes and coordinates key steps in programmed cell death. A comprehensive profiling of IMS proteins has not been performed so far. We have established a method that uses the proapoptotic protein Bax to release IMS proteins from isolated mitochondria, and we profiled the protein composition of this compartment. Using stable isotope-labeled mitochondria from Saccharomyces cerevisiae, we were able to measure specific Bax-dependent protein release and distinguish between quantitatively released IMS proteins and the background efflux of matrix proteins. From the known 31 soluble IMS proteins, 29 proteins were reproducibly identified, corresponding to a coverage of >90%. In addition, we found 20 novel intermembrane space proteins, out of which 10 had not been localized to mitochondria before. Many of these novel IMS proteins have unknown functions or have been reported to play a role in redox regulation. We confirmed IMS localization for 15 proteins using in organello import, protease accessibility upon osmotic swelling, and Bax-release assays. Moreover, we identified two novel mitochondrial proteins, Ymr244c-a (Coa6) and Ybl107c (Mic23), as substrates of the MIA import pathway that have unusual cysteine motifs and found the protein phosphatase Ptc5 to be a novel substrate of the inner membrane protease (IMP). For Coa6 we discovered a role as a novel assembly factor of the cytochrome c oxidase complex. We present here the first and comprehensive proteome of IMS proteins of yeast mitochondria with 51 proteins in total. The IMS proteome will serve as a valuable source for further studies on the role of the IMS in cell life and death.
膜间空间(IMS)代表了线粒体的最小亚区室。然而,它在蛋白质、脂质和金属离子的运输和修饰以及呼吸链复合物的调节和组装中起着重要作用。此外,它还参与许多氧化还原过程,并协调细胞程序性死亡的关键步骤。到目前为止,还没有对 IMS 蛋白进行全面的分析。我们已经建立了一种使用促凋亡蛋白 Bax 从分离的线粒体中释放 IMS 蛋白的方法,并对该隔室的蛋白质组成进行了分析。我们使用稳定同位素标记的酿酒酵母线粒体,能够测量特定的 Bax 依赖性蛋白释放,并区分定量释放的 IMS 蛋白和基质蛋白的背景流出。从已知的 31 种可溶性 IMS 蛋白中,我们能够重复鉴定出 29 种蛋白,覆盖率>90%。此外,我们还发现了 20 种新的膜间空间蛋白,其中 10 种以前没有定位于线粒体。这些新的 IMS 蛋白中的许多具有未知的功能,或者被报道在氧化还原调节中发挥作用。我们使用体外导入、渗透压肿胀时的蛋白酶可及性和 Bax 释放测定,对 15 种蛋白质的 IMS 定位进行了验证。此外,我们鉴定了两种新的线粒体蛋白,Ymr244c-a(Coa6)和 Ybl107c(Mic23),作为 MIA 导入途径的底物,它们具有不寻常的半胱氨酸基序,并发现蛋白磷酸酶 Ptc5 是内膜蛋白酶(IMP)的新底物。对于 Coa6,我们发现了它作为细胞色素 c 氧化酶复合物的一个新组装因子的作用。我们在这里首次展示了酵母线粒体 IMS 蛋白的全面蛋白质组学,总共鉴定到 51 种 IMS 蛋白。该 IMS 蛋白质组将成为进一步研究 IMS 在细胞生死中的作用的宝贵资源。