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Stoichiometry and deletion analyses of subunits in the heterotrimeric F-ATP synthase c ring from the acetogenic bacterium Acetobacterium woodii

机译:产乙酸细菌伍德氏杆菌异三聚体F-ATP合酶c环中亚基的化学计量和缺失分析

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摘要

The ion-translocating c ring of the Na+ F1Fo ATP synthase of the anaerobic bacterium Acetobacterium woodii is the first heteromeric c ring found in nature that contains one V- (c(1)) and two F-type-like c subunits (c(2)/c(3)), the latter of identical amino acid sequence. To address whether they are of equal or different importance for function, they were deleted in combination or individually. Deletion of c(1) was compensated by incorporation of two c(2)/c(3) subunits but the enzyme was unstable and largely impaired in Na+ transport. Deletion of c(2) was compensated by incorporation of c(3) but also led to a reduction of Na+ transport. Deletion of c(3) had no effect. In contrast, deletion of both c(2) and c(3) led to a complete loss of ATPase activity at the cytoplasmic membrane. Mass spectrometric analysis of c(2)+1 Ala and c(2)+2 Ala variants revealed a copy number of 8 : 1 for c(2)/c(3) which is consistent with the biochemical characteristics of the variants. These data indicate a role of c(1) in assembly and a function of c(2) as the predominant c ring constituent.
机译:厌氧细菌木醋杆菌的Na + F1Fo ATP合酶的离子易位c环是自然界中发现的第一个杂合c环,其包含一个V-(c(1))和两个F-type-c c亚基(c( 2)/ c(3)),后者具有相同的氨基酸序列。为了说明它们对于功能的重要性是否相同或不同,将它们组合或单独删除。通过合并两个c(2)/ c(3)亚基可以补偿c(1)的缺失,但该酶不稳定,并且在Na +转运中大大受损。 c(2)的删除通过并入c(3)进行补偿,但也导致Na +转运的减少。删除c(3)无效。相反,删除c(2)和c(3)会导致细胞质膜上ATPase活性完全丧失。质谱分析c(2)+1 Ala和c(2)+2 Ala变体显示c(2)/ c(3)的拷贝数为8:1,这与变体的生化特性是一致的。这些数据表明c(1)在装配中的作用以及c(2)作为主要的c环成分的功能。

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