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来自大肠杆菌的具有突变F0亚基的F1F0 - ATP酶。F1F0复合物的部分纯化和免疫沉淀。

F1F0-ATPase from Escherichia coli with mutant F0 subunits. Partial purification and immunoprecipitation of F1F0 complexes.

作者信息

Vik S B, Simoni R D

出版信息

J Biol Chem. 1987 Jun 15;262(17):8340-6.

PMID:2885319
Abstract

Previously identified mutations in subunits a and b of the F0 sector of the F1F0-ATPase from Escherichia coli are further characterized by isolating detergent-solubilized, partially purified F1F0 complexes from cells bearing these mutations. The composition of the various F1F0 complexes was judged by quantitating the amount of each subunit present in the detergent-solubilized preparations. The composition of the F0 sectors containing altered polypeptides was determined by quantitating the F0 subunits that were immunoprecipitated by antibodies directed against the F1 portion. In this way, the relative amounts of F0 subunits (a, b, c) which survived the isolation procedure bound to F1 were determined for each mutation. This analysis indicates that both missense mutations in subunit a (aser206----leu and ahis245----tyr) resulted in the isolation of F1F0 complexes with normal subunit composition. The nonsense mutation in subunit a (atyr235----end) resulted in isolation of a complex containing the b and c subunits. The bgly131----asp mutation in the b subunit results in an F0 complex which does not assemble or survive the isolation. The isolated F1F0 complex containing the mutation bgly9----asp in the b subunit was defective in two regards: first, a reduction in F1 content relative to F0 and second, the absence of the a subunit. Immunoprecipitations of this preparation demonstrated that F1 interacts with both c and mutant b subunits. A strain carrying the mutation, bgly9----asp, and the compensating suppressor mutation apro240----leu (previously shown to be partially unc+) yielded an F1F0 ++ complex that remained partially defective in F1 binding to F0 but normal in the subunit composition of the F0 sector. The assembly, structure, and function of the F1F0-ATPase is discussed.

摘要

通过从携带这些突变的细胞中分离去污剂溶解的、部分纯化的F1F0复合物,对先前鉴定出的大肠杆菌F1F0 - ATP酶F0扇区a和b亚基中的突变进行了进一步表征。通过定量去污剂溶解制剂中存在的每个亚基的量来判断各种F1F0复合物的组成。通过定量被针对F1部分的抗体免疫沉淀的F0亚基,确定含有改变的多肽的F0扇区的组成。通过这种方式,针对每个突变确定了在与F1结合的分离过程中存活的F0亚基(a、b、c)的相对量。该分析表明,a亚基中的两个错义突变(aser206→leu和ahis245→tyr)导致分离出具有正常亚基组成的F1F0复合物。a亚基中的无义突变(atyr235→end)导致分离出一种含有b和c亚基的复合物。b亚基中的bgly131→asp突变导致一种F0复合物,该复合物在组装或分离过程中无法存活。分离出的含有b亚基中bgly9→asp突变的F1F0复合物在两个方面存在缺陷:第一,相对于F0,F1含量降低;第二,不存在a亚基。该制剂的免疫沉淀表明F1与c和突变的b亚基都相互作用。携带突变bgly9→asp和补偿性抑制突变apro240→leu(先前显示部分unc +)的菌株产生了一种F1F0 ++复合物,该复合物在F1与F0的结合方面仍部分存在缺陷,但F0扇区的亚基组成正常。讨论了F1F0 - ATP酶的组装、结构和功能。

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