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首页> 外文期刊>Biochemistry >Probing the interaction of bovine cytochrome p450scc (CYP11A1) with adrenodoxin: evaluating site-directed mutations by molecular modeling.
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Probing the interaction of bovine cytochrome p450scc (CYP11A1) with adrenodoxin: evaluating site-directed mutations by molecular modeling.

机译:探究牛细胞色素p450scc(CYP11A1)与肾上腺毒素的相互作用:通过分子建模评估定点突变。

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摘要

The present study was undertaken to evaluate the role of positively charged amino acid residues proposed to reside on the proximal surface of bovine cytochrome P450 cholesterol side chain cleavage (P450scc, CYP11A1) and to determine which residues may be involved in protein-protein interactions with the electron carrier adrenodoxin (Adx). In previous studies, nine different lysine residues were identified by chemical and immunological cross-linking experiments as potentially interacting with Adx, while in the present study, two arginine residues have been identified from sequence alignments. From these 11 residues, 13 different P450scc mutants were made of which only seven were able to be expressed and characterized. Each of the seven mutants were evaluated for their ability to bind Adx, to be reduced, and for their enzymatic activity. Among these, K403Q and K405Q showed a consistent decrease in Adx binding, the ability to be reduced by Adx, and enzymatic activity, with K405Q being affected to a much greater extent. More dramatic was the complete loss of Adx binding by R426Q, while still retaining its ability to be chemically reduced and bind carbon monoxide. Independently, a homology model of P450scc was constructed and docked with the structure of Adx. Four potential sites of interaction were identified: P450scc:K403 with Adx:D76, P450scc:K405 with Adx:D72; P450scc:R426 with Adx:E73, and P450scc:K267 with Adx:E47. Thus, the biochemical and molecular modeling studies together support the hypothesis that K267, K403, K405, and R426 participate in the electrostatic interaction of P450scc with Adx.
机译:本研究旨在评估拟存在于牛细胞色素P450胆固醇侧链裂解(P450scc,CYP11A1)近端表面上的带正电荷氨基酸残基的作用,并确定哪些残基可能与蛋白质与蛋白质的相互作用有关。电子载体肾上腺素(Adx)。在以前的研究中,通过化学和免疫学交联实验鉴定出9个不同的赖氨酸残基可能与Adx相互作用,而在本研究中,从序列比对中鉴定出2个精氨酸残基。从这11个残基中,制得了13个不同的P450scc突变体,其中仅七个能够被表达和表征。对七个突变体中的每一个进行结合Adx,被还原的能力和酶活性的评估。其中,K403Q和K405Q持续降低Adx的结合,被Adx还原的能力和酶活性,K405Q受到的影响更大。更引人注目的是R426Q完全失去了Adx结合,同时仍保留了其被化学还原和结合一氧化碳的能力。独立地,构建P450scc的同源性模型并与Adx的结构对接。确定了四个潜在的相互作用位点:带有Adx:D76的P450scc:K403,带有Adx:D72的P450scc:K405;带有Adx:E73的P450scc:R426和带有Adx:E47的P450scc:K267。因此,生化和分子建模研究共同支持以下假设:K267,K403,K405和R426参与P450scc与Adx的静电相互作用。

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