Nazarov Pavel A, Drutsa Valerii L, Miller Walter L, Shkumatov Vladimir M, Luzikov Valentin N, Novikova Lyudmila A
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Russia.
DNA Cell Biol. 2003 Apr;22(4):243-52. doi: 10.1089/104454903321908638.
We studied the properties of various fused combinations of the components of the mitochondrial cholesterol side-chain cleavage system including cytochrome P450scc, adrenodoxin (Adx), and adrenodoxin reductase (AdR). When recombinant DNAs encoding these constructs were expressed in Escherichia coli, both cholesterol side-chain cleavage activity and sensitivity to intracellular proteolysis of the three-component fusions depended on the species of origin and the arrangement of the constituents. To understand the assembly of the catalytic domains in the fused molecules, we analyzed the catalytic properties of three two-component fusions: P450scc-Adx, Adx-P450scc, and AdR-Adx. We examined the ability of each fusion to carry out the side-chain cleavage reaction in the presence of the corresponding missing component of the whole system and examined the dependence of this reaction on the presence of exogenously added individual components of the double fusions. This analysis indicated that the active centers in the double fusions are either unable to interact or are misfolded; in some cases they were inaccessible to exogenous partners. Our data suggest that when fusion proteins containing P450scc, Adx, and AdR undergo protein folding, the corresponding catalytic domains are not formed independently of each other. Thus, the correct folding and catalytic activity of each domain is determined interactively and not independently.
我们研究了线粒体胆固醇侧链裂解系统各组分的各种融合组合的特性,这些组分包括细胞色素P450scc、肾上腺皮质铁氧还蛋白(Adx)和肾上腺皮质铁氧还蛋白还原酶(AdR)。当编码这些构建体的重组DNA在大肠杆菌中表达时,胆固醇侧链裂解活性以及三组分融合体对细胞内蛋白水解的敏感性均取决于来源物种和组分的排列方式。为了了解融合分子中催化结构域的组装情况,我们分析了三种双组分融合体的催化特性:P450scc-Adx、Adx-P450scc和AdR-Adx。我们检测了每种融合体在整个系统相应缺失组分存在的情况下进行侧链裂解反应的能力,并检测了该反应对外源添加的双融合体单个组分的依赖性。该分析表明,双融合体中的活性中心要么无法相互作用,要么折叠错误;在某些情况下,它们对外源伴侣不可接近。我们的数据表明,当含有P450scc、Adx和AdR的融合蛋白进行蛋白质折叠时,相应的催化结构域并非彼此独立形成。因此,每个结构域的正确折叠和催化活性是通过相互作用而非独立确定的。