Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.
J Biol Chem. 2010 Sep 3;285(36):28353-62. doi: 10.1074/jbc.M110.148262. Epub 2010 Jul 2.
In humans the mitochondrial inner membrane protein Oxa1L is involved in the biogenesis of membrane proteins and facilitates the insertion of both mitochondrial- and nuclear-encoded proteins from the mitochondrial matrix into the inner membrane. The C-terminal approximately 100-amino acid tail of Oxa1L (Oxa1L-CTT) binds to mitochondrial ribosomes and plays a role in the co-translational insertion of mitochondria-synthesized proteins into the inner membrane. Contrary to suggestions made for yeast Oxa1p, our results indicate that the C-terminal tail of human Oxa1L does not form a coiled-coil helical structure in solution. The Oxa1L-CTT exists primarily as a monomer in solution but forms dimers and tetramers at high salt concentrations. The binding of Oxa1L-CTT to mitochondrial ribosomes is an enthalpy-driven process with a K(d) of 0.3-0.8 microM and a stoichiometry of 2. Oxa1L-CTT cross-links to mammalian mitochondrial homologs of the bacterial ribosomal proteins L13, L20, and L28 and to mammalian mitochondrial specific ribosomal proteins MRPL48, MRPL49, and MRPL51. Oxa1L-CTT does not cross-link to proteins decorating the conventional exit tunnel of the bacterial large ribosomal subunit (L22, L23, L24, and L29).
在人类中,线粒体内膜蛋白 Oxa1L 参与膜蛋白的生物发生,并促进线粒体和核编码蛋白从线粒体基质插入内膜。Oxa1L(Oxa1L-CTT)的 C 端约 100 个氨基酸尾巴与线粒体核糖体结合,并在翻译过程中插入线粒体合成的蛋白质到内膜中发挥作用。与酵母 Oxa1p 的建议相反,我们的结果表明,人 Oxa1L 的 C 端尾巴在溶液中不形成卷曲螺旋结构。Oxa1L-CTT 主要以单体形式存在于溶液中,但在高盐浓度下形成二聚体和四聚体。Oxa1L-CTT 与线粒体核糖体的结合是一个热力学驱动的过程,K(d)为 0.3-0.8 microM,结合比为 2。Oxa1L-CTT 交联到细菌核糖体蛋白 L13、L20 和 L28 的哺乳动物线粒体同源物,以及哺乳动物线粒体特异性核糖体蛋白 MRPL48、MRPL49 和 MRPL51。Oxa1L-CTT 不会交联到细菌大亚基(L22、L23、L24 和 L29)常规出口隧道上的蛋白质。