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首页> 外文期刊>Biochemistry >Different Binding Modes of Two Flaviolin Substrate Molecules in Cytochrome P450 158A1 (CYP158A1) Compared to CYP158A2
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Different Binding Modes of Two Flaviolin Substrate Molecules in Cytochrome P450 158A1 (CYP158A1) Compared to CYP158A2

机译:与细胞色素P450 158A1(CYP158A1)和CYP158A2相比,两种黄素蛋白底物分子的不同结合模式

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摘要

Cytochrome P450 158A2 (CYP158A2) has been shown to catalyze an unusual oxidative C-C coupling reaction to polymerize flaviolin and form highly conjugated pigments (three isomers of biflaviolin and one triflaviolin) in Streptomyces coelicolor A3(2) which protect the soil bacterium from deleterious effects of UV irradiation (Zhao B. et al. (2005) J. Biol. Chem. 280, 11599-11607). The present studies demonstrate that the subfamily partner CYP158A1, sharing 61% amino acid identity with CYP158A2, can also catalyze the same flaviolin dimerization reactions, but it generates just two of the three isomers of biflaviolin that CYP158A2 produces. Furthermore, the two CYP158A1 products have very different molar ratios compared with the corresponding CYP158A2 products, indicating that each enzyme maintains its own stereo- and regiospecificity. To find an explanation for these differences, three CYP158A1 structures have been solved by X-ray crystallography and have been compared with those for CYP158A2. The structures reveal surprising differences. Particularly, only one flaviolin molecule is present close to the heme iron in CYP158A1, and the second flaviolin molecule binds at the entrance of the putative substrate access channel on the protein distal surface 9 A away. Our work describes two members of the same P450 subfamily, which produce the same products by oxidative C-C coupling yet show very different structural orientations of substrate molecules in the active site.
机译:细胞色素P450 158A2(CYP158A2)已显示出一种不寻常的氧化CC偶联反应,可在黄链霉菌A3(2)中聚合黄素蛋白并形成高度共轭的色素(Biflaviolin的一种异构体和一种Triflaviolin的三种异构体),从而保护土壤细菌免受有害细菌的伤害UV辐射(Zhao B.等人(2005)J.Biol.Chem.280,11599-11607)。本研究表明,与CYP158A2拥有61%氨基酸同一性的亚家族伴侣CYP158A1也可以催化相同的黄素二聚化反应,但它仅产生CYP158A2产生的双黄素三异构体中的两个。此外,与相应的CYP158A2产品相比,这两种CYP158A1产品的摩尔比非常不同,这表明每种酶都保持其自身的立体特异性和区域特异性。为了找到这些差异的解释,已通过X射线晶体学解析了三种CYP158A1结构并将其与CYP158A2进行了比较。结构显示出令人惊讶的差异。特别地,在CYP158A1中的血红素铁附近仅存在一个黄素蛋白分子,并且第二个黄素蛋白分子在远离蛋白质远端表面9 A的假定的底物进入通道的入口处结合。我们的工作描述了同一P450亚家族的两个成员,这些成员通过氧化C-C偶联产生相同的产物,但在活性位点中显示出底物分子的结构取向非常不同。

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