Arselin Geneviève, Giraud Marie-France, Dautant Alain, Vaillier Jacques, Brèthes Daniel, Coulary-Salin Bénédicte, Schaeffer Jacques, Velours Jean
Institut de Biochimie et Génétique Cellulaires du CNRS, Université Victor Segalen, Bordeaux, France.
Eur J Biochem. 2003 Apr;270(8):1875-84. doi: 10.1046/j.1432-1033.2003.03557.x.
A conserved putative dimerization GxxxG motif located in the unique membrane-spanning segment of the ATP synthase subunit e was altered in yeast both by insertion of an alanine residue and by replacement of glycine by leucine residues. These alterations led to the loss of subunit g and the loss of dimeric and oligomeric forms of the yeast ATP synthase. Furthermore, as in null mutants devoid of either subunit e or subunit g, mitochondria displayed anomalous morphologies with onion-like structures. By taking advantage of the presence of the endogenous cysteine 28 residue in the wild-type subunit e, disulfide bond formation between subunits e in intact mitochondria was found to increase the stability of an oligomeric structure of the ATP synthase in digitonin extracts. The data show the involvement of the dimerization motif of subunit e in the formation of supramolecular structures of mitochondrial ATP synthases and are in favour of the existence in the inner mitochondrial membrane of associations of ATP synthases whose masses are higher than those of ATP synthase dimers.
位于ATP合酶亚基e独特跨膜区段的一个保守的假定二聚化GxxxG基序,在酵母中通过插入一个丙氨酸残基以及用亮氨酸残基取代甘氨酸而发生改变。这些改变导致亚基g的缺失以及酵母ATP合酶二聚体和寡聚体形式的丧失。此外,如同在缺乏亚基e或亚基g的无效突变体中一样,线粒体呈现出具有洋葱样结构的异常形态。利用野生型亚基e中内源性半胱氨酸28残基的存在,发现完整线粒体中亚基e之间二硫键的形成增加了洋地黄皂苷提取物中ATP合酶寡聚体结构的稳定性。数据表明亚基e的二聚化基序参与线粒体ATP合酶超分子结构的形成,并且支持线粒体内膜中存在质量高于ATP合酶二聚体的ATP合酶缔合体。