Ii M, Mihara K
Department of Molecular Biology, Graduate School of Medical Science, Kyushu University, Fukuoka 812-0054, Japan.
J Biol Chem. 2001 Jul 6;276(27):24704-12. doi: 10.1074/jbc.M102584200. Epub 2001 Apr 24.
Cytochrome oxidase subunits I, II, and III, the mitochondrial DNA-encoded proteins, are inserted across the inner membrane by the Oxa1p-containing translocator in a membrane potential-dependent manner. Oxa1p is also involved in the insertion of the cytoplasmically synthesized precursor of Oxa1p itself into the inner membrane from the matrix via the conservative sorting pathway. The mechanism of insertion of the other mitochondrially synthesized proteins, however, is unexplored. The insertion of the mitochondrial DNA-encoded subunit 8 of F(1)F(0)-ATPase (Su8) across the inner membrane was analyzed in vitro using the inverted inner membrane vesicles and the Escherichia coli lysate-synthesized substrate. This assay revealed that the N-terminal segment of Su8 inserted across the membrane to the intermembrane space and assumed the correct trans-cis topology depending on the mitochondrial matrix fraction. This translocation reaction was similar to those of Sec-independent, direct insertion pathways of E. coli and chloroplast thylakoid membranes. (i) It required neither nucleotide triphosphates nor membrane potential, and hydrophobic forces drove the process. (ii) It did not require protease-sensitive membrane components facing the matrix space. (iii) It could be inserted across liposomes in the correct topology in a matrix fraction-dependent manner. Thus, a novel mechanism conserved in bacteria and chloroplasts also functions in the insertion of Su8 across the mitochondrial inner membrane.
细胞色素氧化酶亚基I、II和III,即线粒体DNA编码的蛋白质,通过含Oxa1p的转运体以膜电位依赖的方式插入内膜。Oxa1p还参与将细胞质中合成的Oxa1p前体通过保守分选途径从基质插入内膜。然而,其他线粒体合成蛋白质的插入机制尚未被探索。利用倒置内膜囊泡和大肠杆菌裂解物合成的底物,在体外分析了F(1)F(0)-ATP酶的线粒体DNA编码亚基8(Su8)跨内膜的插入情况。该分析表明,Su8的N端片段跨膜插入到膜间隙,并根据线粒体基质部分呈现正确的反-顺拓扑结构。这种转运反应类似于大肠杆菌和叶绿体类囊体膜的不依赖Sec的直接插入途径。(i)它既不需要三磷酸核苷酸也不需要膜电位,疏水作用力驱动这一过程。(ii)它不需要面向基质空间的蛋白酶敏感膜成分。(iii)它可以以基质部分依赖的方式以正确的拓扑结构插入脂质体。因此,一种在细菌和叶绿体中保守的新机制也在Su8跨线粒体内膜的插入中发挥作用。