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单体和二聚体细胞色素c氧化酶的拓扑学研究以及使用荧光探针鉴定铜A位点

Topological studies of monomeric and dimeric cytochrome c oxidase and identification of the copper A site using a fluorescence probe.

作者信息

Hall J, Moubarak A, O'Brien P, Pan L P, Cho I, Millett F

机构信息

Department of Chemistry, University of Arkansas, Fayetteville 72701.

出版信息

J Biol Chem. 1988 Jun 15;263(17):8142-9.

PMID:2836414
Abstract

Beef heart cytochrome c oxidase was labeled at a single sulfhydryl group by treatment with 5 mM N-iodoacetylamidoethyl-1-aminonaphthalene-5-sulfonate (1,5-I-AEDANS) at pH 8.0 for 4 h. Sodium dodecyl sulfate gel electrophoresis revealed that the enzyme was exclusively labeled at subunit III, presumably at Cys-115. The high affinity phase of the electron transfer reaction with horse cytochrome c was not affected by acetylamidoethyl-1-aminonaphthalene-5-sulfonate (AEDANS) labeling. Addition of horse cytochrome c to dimeric AEDANS-cytochrome c oxidase resulted in a 55% decrease in the AEDANS fluorescence due to the formation of a 1:1 complex between the two proteins. Forster energy transfer calculations indicated that the distance from the AEDANS label on subunit III to the heme group of cytochrome c was in the range 26-40 A. In contrast to the results with the dimeric enzyme, the fluorescence of monomeric AEDANS-cytochrome c oxidase was not quenched at all by binding horse heart cytochrome c, indicating that the AEDANS label on subunit III was at least 54 A from the heme group of cytochrome c. These results support a model in which the lysines surrounding the heme crevice of cytochrome c interact with carboxylates on subunit II of one monomer of the cytochrome c oxidase dimer and the back of the molecule is close to subunit III on the other monomer. In order to identify the cysteine residues that ligand copper A, a new procedure was developed to specifically remove copper A from cytochrome c oxidase by incubation with 2-mercaptoethanol followed by gel chromatography. Treatment of the copper A-depleted cytochrome c oxidase preparation with 1,5-I-AEDANS resulted in labeling sulfhydryl groups on subunit II as well as on subunit III. No additional subunits were labeled. This result indicates that the copper A binding site is located at cysteines 196 and/or 200 of subunit II and that removal of copper A exposes these residues for labeling by 1,5-I-AEDANS. Alternative copper A depletion methods involving incubation with bathocuproine sulfonate (Weintraub, S.T., and Wharton, D.C. (1981) J. Biol. Chem. 256, 1669-1676) or p-(hydroxymercuri)benzoate (Li, P.M., Gelles, J., Chan, S.I., Sullivan, R.J., and Scott, R.A. (1987) Biochemistry 26, 2091-2095) were also investigated. Treatment of these preparations with 1,5-I-AEDANS resulted in labeling cysteine residues on subunits II and III. However, additional sulfhydryl residues on other subunits were also labeled, preventing a definitive assignment of the location of copper A using these depletion procedures.

摘要

牛心细胞色素c氧化酶在pH 8.0条件下用5 mM N -碘乙酰氨基乙基-1-氨基萘-5-磺酸盐(1,5 - I - AEDANS)处理4小时,在单个巯基上被标记。十二烷基硫酸钠凝胶电泳显示该酶仅在亚基III上被标记,推测是在半胱氨酸-115处。与马细胞色素c的电子转移反应的高亲和力阶段不受乙酰氨基乙基-1-氨基萘-5-磺酸盐(AEDANS)标记的影响。向二聚体AEDANS -细胞色素c氧化酶中加入马细胞色素c,由于两种蛋白质形成1:1复合物,导致AEDANS荧光降低55%。福斯特能量转移计算表明,亚基III上的AEDANS标记与细胞色素c的血红素基团之间的距离在26 - 40 Å范围内。与二聚体酶的结果相反,单体AEDANS -细胞色素c氧化酶的荧光完全没有因结合马心细胞色素c而猝灭,这表明亚基III上的AEDANS标记距离细胞色素c的血红素基团至少54 Å。这些结果支持了一个模型,即细胞色素c血红素裂隙周围的赖氨酸与细胞色素c氧化酶二聚体一个单体的亚基II上的羧酸盐相互作用,并且分子背面靠近另一个单体上的亚基III。为了鉴定与铜A配位的半胱氨酸残基,开发了一种新方法,通过与2-巯基乙醇孵育然后进行凝胶色谱,从细胞色素c氧化酶中特异性去除铜A。用1,5 - I - AEDANS处理去除铜A的细胞色素c氧化酶制剂,导致亚基II以及亚基III上的巯基被标记。没有其他亚基被标记。该结果表明铜A结合位点位于亚基II的半胱氨酸196和/或200处,并且去除铜A会使这些残基暴露以便被1,5 - I - AEDANS标记。还研究了涉及与磺酸铜试剂(温特劳布,S.T.,和沃顿,D.C.(1981)《生物化学杂志》256,1669 - 1676)或对-(羟基汞)苯甲酸(李,P.M.,盖勒斯,J.,陈,S.I.,沙利文,R.J.,和斯科特,R.A.(1987)《生物化学》26,2091 - 2095)孵育的其他去除铜A的方法。用1,5 - I - AEDANS处理这些制剂,导致亚基II和III上的半胱氨酸残基被标记。然而,其他亚基上的额外巯基残基也被标记,这使得使用这些去除方法无法明确确定铜A的位置。

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