Boyle G M, Roucou X, Nagley P, Devenish R J, Prescott M
Department of Biochemistry, Monash University, Victoria, Australia.
Eur J Biochem. 1999 Jun;262(2):315-23. doi: 10.1046/j.1432-1327.1999.00345.x.
By means of a yeast genome database search, we have identified an open reading frame located on chromosome XVI of Saccharomyces cerevisiae that encodes a protein with 53% amino acid similarity to the 11.3-kDa subunit g of bovine mitochondrial F1F0-ATP synthase. We have designated this ORF ATP20, and its product subunit g. A null mutant strain, constructed by insertion of the HIS3 gene into the coding region of ATP20, retained oxidative phosphorylation function. Assembly of F1F0-ATP synthase in the atp20-null strain was not affected in the absence of subunit g and levels of oligomycin-sensitive ATP hydrolase activity in mitochondria were normal. Immunoprecipitation of F1F0-ATP synthase from mitochondrial lysates prepared from atp20-null cells expressing a variant of subunit g with a hexahistidine motif indicated that this polypeptide was associated with other well-characterized subunits of the yeast complex. Whilst mitochondria isolated from the atp20-null strain had the same oxidative phosphorylation efficiency (ATP : O) as that of the control strain, the atp20-null strain displayed approximately a 30% reduction in both respiratory capacity and ATP synthetic rate. The absence of subunit g also reduced the activity of cytochrome c oxidase, and altered the kinetic control of this complex as demonstrated by experiments titrating ATP synthetic activity with cyanide. These results indicate that subunit g is associated with F1F0-ATP synthase and is required for maximal levels of respiration, ATP synthesis and cytochrome c oxidase activity in yeast.
通过对酵母基因组数据库的搜索,我们鉴定出位于酿酒酵母第十六条染色体上的一个开放阅读框,它编码一种蛋白质,该蛋白质与牛线粒体F1F0 - ATP合酶的11.3 kDa亚基g具有53%的氨基酸相似性。我们将这个开放阅读框命名为ATP20,其产物命名为亚基g。通过将HIS3基因插入ATP20的编码区构建的缺失突变株保留了氧化磷酸化功能。在没有亚基g的情况下,atp20缺失菌株中F1F0 - ATP合酶的组装不受影响,线粒体中寡霉素敏感的ATP水解酶活性水平正常。从表达带有六组氨酸基序的亚基g变体的atp20缺失细胞制备的线粒体裂解物中对F1F0 - ATP合酶进行免疫沉淀表明,该多肽与酵母复合物中其他特征明确的亚基相关联。虽然从atp20缺失菌株分离的线粒体与对照菌株具有相同的氧化磷酸化效率(ATP:O),但atp20缺失菌株的呼吸能力和ATP合成速率均降低了约30%。亚基g的缺失还降低了细胞色素c氧化酶的活性,并改变了该复合物的动力学控制,这通过用氰化物滴定ATP合成活性的实验得到证明。这些结果表明,亚基g与F1F0 - ATP合酶相关联,是酵母中最大呼吸水平、ATP合成和细胞色素c氧化酶活性所必需的。