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在大肠杆菌F1 ATP酶的ε亚基中引入反应性半胱氨酸残基,用四氟苯基叠氮马来酰亚胺修饰这些位点,并检测当不同核苷酸处于催化位点时ε亚基结合情况的变化。

Introduction of reactive cysteine residues in the epsilon subunit of Escherichia coli F1 ATPase, modification of these sites with tetrafluorophenyl azide-maleimides, and examination of changes in the binding of the epsilon subunit when different nucleotides are in catalytic sites.

作者信息

Aggeler R, Chicas-Cruz K, Cai S X, Keana J F, Capaldi R A

机构信息

Institute of Molecular Biology, University of Oregon, Eugene 97403.

出版信息

Biochemistry. 1992 Mar 24;31(11):2956-61. doi: 10.1021/bi00126a016.

Abstract

Cysteine residues have been exchanged for serine residues at positions 10 and 108 in the epsilon subunit of the Escherichia coli F1 ATPase by site-directed mutagenesis to create two mutants, epsilon-S10C and epsilon-S108C. These two mutants and wild-type enzyme were reacted with [14C]N-ethylmaleimide (NEM) to examine the solvent accessibility of Cys residues and with novel photoactivated cross-linkers, tetrafluorophenyl azide-maleimides (TFPAM's), to examine near-neighbor relationships of subunits. In native wild-type F1 ATPase, NEM reacted with alpha subunits at a maximal level of 1 mol/mol of enzyme (1 mol/3 alpha subunits) and with the delta subunit at 1 mol/mol of enzyme; other subunits were not labeled by the reagent. In the mutants epsilon-S10C and epsilon-S108C, Cys10 and Cys108, respectively, were also labeled by NEM, indicating that these are surface residues. Reaction of wild-type enzyme with TFPAM's gave cross-linking of the delta subunit to both alpha and beta subunits. Reaction of the mutants with TFPAM's also cross-linked delta to alpha and beta and in addition formed covalent links between Cys10 of the epsilon subunit and the gamma subunit and between Cys108 of the epsilon subunit and the alpha subunit. The yield of cross-linking between sites on epsilon and other subunits depended on the nucleotide conditions used; this was not the case for delta-alpha or delta-beta cross-linked products. In the presence of ATP+EDTA the yield of cross-linking between epsilon-Cys10 and gamma was high (close to 50%) while the yield of epsilon-Cys108 and alpha was low (around 10%).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过定点诱变,将大肠杆菌F1 ATP酶ε亚基第10位和第108位的半胱氨酸残基替换为丝氨酸残基,构建了两个突变体ε-S10C和ε-S108C。使这两个突变体和野生型酶与[14C]N-乙基马来酰亚胺(NEM)反应,以检测半胱氨酸残基的溶剂可及性,并与新型光活化交联剂四氟苯基叠氮马来酰亚胺(TFPAM)反应,以检测亚基的近邻关系。在天然野生型F1 ATP酶中,NEM与α亚基以最大水平1摩尔/摩尔酶(1摩尔/3个α亚基)反应,与δ亚基以1摩尔/摩尔酶反应;其他亚基未被该试剂标记。在突变体ε-S10C和ε-S108C中,半胱氨酸10和半胱氨酸108也分别被NEM标记,表明它们是表面残基。野生型酶与TFPAM反应使δ亚基与α和β亚基交联。突变体与TFPAM反应也使δ与α和β交联,此外还在ε亚基的半胱氨酸10与γ亚基之间以及ε亚基的半胱氨酸108与α亚基之间形成了共价连接。ε与其他亚基位点之间的交联产率取决于所用的核苷酸条件;δ-α或δ-β交联产物则不然。在ATP+EDTA存在下,ε-半胱氨酸10与γ之间的交联产率很高(接近50%),而ε-半胱氨酸108与α之间的产率很低(约10%)。(摘要截短于250字)

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