Stephens A N, Roucou X, Artika I M, Devenish R J, Nagley P
Department of Biochemistry and Molecular Biology, Monash University, Victoria, Australia.
Eur J Biochem. 2000 Nov;267(21):6443-51. doi: 10.1046/j.1432-1327.2000.01733.x.
We have used site-directed chemical labelling to demonstrate the membrane topology and to identify neighbouring subunits of subunit 8 (Y8) in yeast mitochondrial ATP synthase (mtATPase). Unique cysteine residues were introduced at the N or C-terminus of Y8 by site-directed mutagenesis. Expression and targeting to mitochondria in vivo of each of these variants in a yeast Y8 null mutant was able to restore activity to an otherwise nonfunctional ATP synthase complex. The position of each introduced cysteine relative to the inner mitochondrial membrane was probed with thiol-specific nonpermeant and permeant reagents in both intact and lysed mitochondria. The data indicate that the N-terminus of Y8 is located in the intermembrane space of mitochondria whereas the C-terminus is located within the mitochondrial matrix. The proximity of Y8 to other proteins of mtATPase was tested using heterobifunctional cross-linking reagents, each with one thiol-specific reactive group and one nonspecific, photoactivatible reactive group. These experiments revealed the proximity of the C-terminal domain of Y8 to subunits d and f, and that of the N-terminal domain to subunit f. It is concluded that Y8 possesses a single transmembrane domain which extends across the inner membrane of intact mitochondria. As subunit d is a likely component of the stator stalk of mitochondrial ATP synthase, we propose, on the basis of the observed cross-links, that Y8 may also be part of the stator stalk.
我们利用定点化学标记来证明酵母线粒体ATP合酶(mtATPase)中8号亚基(Y8)的膜拓扑结构并鉴定其相邻亚基。通过定点诱变在Y8的N端或C端引入独特的半胱氨酸残基。在酵母Y8缺失突变体中,这些变体中的每一个在体内表达并靶向线粒体后,都能够使原本无功能的ATP合酶复合物恢复活性。在完整和裂解的线粒体中,用硫醇特异性非渗透性和渗透性试剂探测每个引入的半胱氨酸相对于线粒体内膜的位置。数据表明,Y8的N端位于线粒体的膜间隙中,而C端位于线粒体基质内。使用异双功能交联试剂测试Y8与mtATPase其他蛋白质的接近程度,每种试剂都有一个硫醇特异性反应基团和一个非特异性的、可光活化的反应基团。这些实验揭示了Y8的C端结构域与d亚基和f亚基接近,N端结构域与f亚基接近。得出的结论是,Y8具有一个跨完整线粒体内膜延伸的单一跨膜结构域。由于d亚基可能是线粒体ATP合酶定子柄的组成部分,基于观察到的交联情况,我们提出Y8也可能是定子柄的一部分。