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首页> 外文期刊>Proteins: Structure, Function, and Genetics >QM/MM study of the C-C coupling reaction mechanism of CYP121, an essential Cytochrome p450 of Mycobacterium tuberculosis
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QM/MM study of the C-C coupling reaction mechanism of CYP121, an essential Cytochrome p450 of Mycobacterium tuberculosis

机译:结核分枝杆菌必不可少的细胞色素p450 CYP121的C-C偶联反应机理的QM / MM研究

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Among 20 p450s of Mycobacterium tuberculosis (Mt), CYP121 has received an outstanding interest, not only due to its essentiality for bacterial viability but also because it catalyzes an unusual carbon-carbon coupling reaction. Based on the structure of the substrate bound enzyme, several reaction mechanisms were proposed involving first Tyr radical formation, second Tyr radical formation, and C-C coupling. Key and unknown features, being the nature of the species that generate the first and second radicals, and the role played by the protein scaffold each step. In the present work we have used classical and quantum based computer simulation methods to study in detail its reaction mechanism. Our results show that substrate binding promotes formation of the initial oxy complex, Compound I is the responsible for first Tyr radical formation, and that the second Tyr radical is formed subsequently, through a PCET reaction, promoted by the presence of key residue Arg386. The final C-C coupling reaction possibly occurs in bulk solution, thus yielding the product in one oxygen reduction cycle. Our results thus contribute to a better comprehension of MtCYP121 reaction mechanism, with direct implications for inhibitor design, and also contribute to our general understanding of these type of enzymes.
机译:在20个p450结核分枝杆菌(Mt)中,CYP121引起了人们极大的兴趣,这不仅是因为CYP121对细菌生存力的重要作用,而且还因为它催化了异常的碳-碳偶联反应。基于底物结合酶的结构,提出了几种反应机理,涉及第一Tyr自由基形成,第二Tyr自由基形成和C-C偶联。关键和未知特征,即产生第一和第二自由基的物种的性质,以及蛋白质支架在每个步骤中所扮演的角色。在目前的工作中,我们使用了经典的和基于量子的计算机模拟方法来详细研究其反应机理。我们的结果表明,底物结合促进了初始氧基配合物的形成,化合物I负责第一个Tyr自由基的形成,第二个Tyr自由基随后通过PCET反应形成,并通过关键残基Arg386的存在而得以促进。最终的C-C偶联反应可能在本体溶液中发生,因此在一个氧还原循环中生成了产物。因此,我们的结果有助于更好地理解MtCYP121反应机理,直接影响抑制剂的设计,也有助于我们对这些酶的一般理解。

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