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大肠杆菌F1F0型ATP酶中ε亚基在α亚基和β亚基之间的核苷酸依赖性移动。

Nucleotide-dependent movement of the epsilon subunit between alpha and beta subunits in the Escherichia coli F1F0-type ATPase.

作者信息

Aggeler R, Capaldi R A

机构信息

Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403-1229, USA.

出版信息

J Biol Chem. 1996 Jun 7;271(23):13888-91. doi: 10.1074/jbc.271.23.13888.

Abstract

Mutants of ECF1-ATPase were generated, containing cysteine residues in one or more of the following positions: alphaSer-411, betaGlu-381, and epsilonSer-108, after which disulfide bridges could be created by CuCl2 induced oxidation in high yield between alpha and epsilon, beta and epsilon, alpha and gamma, beta and gamma (endogenous Cys-87), and alpha and beta. All of these cross-links lead to inhibition of ATP hydrolysis activity. In the two double mutants, containing a cysteine in epsilonSer-108 along with either the DELSEED region of beta (Glu-381) or the homologous region in alpha (Ser-411), there was a clear nucleotide dependence of the cross-link formation with the epsilon subunit. In betaE381C/epsilonS108C the beta-epsilon cross-link was obtained preferentially when Mg2+ and ADP + Pi (addition of MgCl2 + ATP) was present, while the alpha-epsilon cross-link product was strongly favored in the alphaS411C/epsilonS108C mutant in the Mg2+ ATP state (addition of MgCl2 + 5'-adenylyl-beta,gamma-imidodiphosphate). In the triple mutant alphaS411C/betaE381C/epsilonS108C, the epsilon subunit bound to the beta subunit in Mg2+-ADP and to the alpha subunit in Mg2+-ATP, indicating a significant movement of this subunit. The gamma subunit cross-linked to the beta subunit in higher yield in Mg2+-ATP than in Mg2+-ADP, and when possible, i.e. in the triple mutant, always preferred the interaction with the beta over the alpha subunit.

摘要

生成了ECF1 - ATP酶的突变体,在以下一个或多个位置含有半胱氨酸残基:α - Ser - 411、β - Glu - 381和ε - Ser - 108,之后通过CuCl₂诱导氧化可高产率地在α与ε、β与ε、α与γ、β与γ(内源性Cys - 87)以及α与β之间形成二硫键。所有这些交联都导致ATP水解活性受到抑制。在两个双突变体中,ε - Ser - 108处含有半胱氨酸,同时伴有β的DELSEED区域(Glu - 381)或α的同源区域(Ser - 411),ε亚基的交联形成存在明显的核苷酸依赖性。在βE381C/εS108C中,当存在Mg²⁺和ADP + Pi(添加MgCl₂ + ATP)时,优先获得β - ε交联,而在Mg²⁺ - ATP状态(添加MgCl₂ + 5'-腺苷 - β,γ - 亚氨基二磷酸)下,αS411C/εS108C突变体中α - ε交联产物占优势。在三突变体αS411C/βE381C/εS108C中,ε亚基在Mg²⁺ - ADP状态下与β亚基结合,在Mg²⁺ - ATP状态下与α亚基结合,表明该亚基有显著移动。γ亚基在Mg²⁺ - ATP中与β亚基交联的产率高于在Mg²⁺ - ADP中,并且在可能的情况下,即在三突变体中,总是优先与β亚基而非α亚基相互作用。

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