Brunner Susanne, Everard-Gigot Valerie, Stuart Rosemary A
Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin 53233, USA.
J Biol Chem. 2002 Dec 13;277(50):48484-9. doi: 10.1074/jbc.M209382200. Epub 2002 Oct 10.
The yeast F(1)F(o)-ATP synthase forms a dimeric complex in the mitochondrial inner membrane. Dimerization of two F(1)F(o) monomeric complexes involves the physical association of two membrane-embedded F(o) sectors and in a manner, which is dependent on the F(o) subunit, Su e. Sequence analysis of Su e protein family members indicated the presence of a conserved coiled-coil motif. As this motif is often the basis for protein homodimerization events, it was hypothesized that Su e forms homodimers in the inner membrane and that formation of Su e dimers between two neighboring F(o) complexes would facilitate dimerization of the F(1)F(o)-ATP synthase complex (Arnold, I., Pfeiffer, K., Neupert, W., Stuart, R. A., and Schägger, H. (1998) EMBO J. 17, 7170-7178). Using a histidine-tagged derivative of yeast Su e, Su e-His(12), combined with cross-linking and affinity purification approaches, we have directly demonstrated the ability of the yeast Su e protein to form homodimers. Functionality of the Su e-His(12) derivative was confirmed by its ability to assemble into the ATP synthase complex and to support its dimerization in the Deltasu e null mutant yeast cells. The close association of two neighboring Su e proteins was also demonstrated using cross-linking with Cu(2+), which binds and cross-links a unique Cys residue in neighboring Su e proteins. Finally, we propose a model for the molecular basis of the homodimerization of the Su e proteins.
酵母F(1)F(o)-ATP合酶在线粒体内膜中形成二聚体复合物。两个F(1)F(o)单体复合物的二聚化涉及两个膜嵌入的F(o)扇区的物理缔合,并且其方式依赖于F(o)亚基Su e。对Su e蛋白家族成员的序列分析表明存在保守的卷曲螺旋基序。由于该基序通常是蛋白质同二聚化事件的基础,因此推测Su e在内膜中形成同二聚体,并且两个相邻F(o)复合物之间Su e二聚体的形成将促进F(1)F(o)-ATP合酶复合物的二聚化(阿诺德,I.,普费弗,K.,诺伊佩特,W.,斯图尔特,R.A.,和沙格,H.(1998年)《欧洲分子生物学组织杂志》17,7170 - 7178)。使用酵母Su e的组氨酸标签衍生物Su e-His(12),结合交联和亲和纯化方法,我们直接证明了酵母Su e蛋白形成同二聚体的能力。Su e-His(12)衍生物的功能通过其组装到ATP合酶复合物中并支持其在缺失Su e的酵母突变体细胞中二聚化的能力得以证实。还使用与Cu(2+)交联的方法证明了两个相邻Su e蛋白的紧密缔合,Cu(2+)结合并交联相邻Su e蛋白中一个独特的半胱氨酸残基。最后,我们提出了一个关于Su e蛋白同二聚化分子基础的模型。