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Biochemical and structural characterization of CYP124: A methyl-branched lipid ω-hydroxylase from Mycobacterium tuberculosis

机译:CYP124的生化和结构表征:结核分枝杆菌的甲基支链脂质ω-羟化酶

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摘要

Mycobacterium tuberculosis (Mtb) produces a variety of methyl-branched lipids that serve important functions, including modulating the immune response during pathogenesis and contributing to a robust cell wall that is impermeable to many chemical agents. Here, we report characterization of Mtb CYP124 (Rv2266) that includes demonstration of preferential oxidation of methyl-branched lipids. Spectrophotometric titrations and analysis of reaction products indicate that CYP124 tightly binds and hydroxy-lates these substrates at the chemically disfavored ω-position. We also report X-ray crystal structures of the ligand-free and phytanic acid-bound protein at a resolution of 1.5 A and 2.1 A, respectively, which provide structural insights into a cytochrome P450 with predominant ω-hydroxylase activity. The structures of ligand-free and substrate-bound CYP124 reveal several differences induced by substrate binding, including reorganization of the I helix and closure of the active site by elements of the F, G, and D helices that bind the substrate and exclude solvent from the hydrophobic active site cavity. The observed regiospecific catalytic activity suggests roles of CYP124 in the physiological oxidation of relevant Mtb methyl-branched lipids. The enzymatic specificity and structures reported here provide a scaffold for the design and testing of specific inhibitors of CYP124.
机译:结核分枝杆菌(Mtb)产生多种具有重要功能的甲基支链脂质,包括调节致病过程中的免疫反应以及形成坚固的细胞壁,使许多化学试剂无法渗透。在这里,我们报告Mtb CYP124(Rv2266)的表征,包括甲基支链脂质的优先氧化演示。分光光度滴定法和反应产物分析表明,CYP124在化学上不利的ω位置紧密结合并羟基化这些底物。我们还报告了X射线晶体结构的无配体和植酸绑定的蛋白质分别在1.5 A和2.1 A的分辨率,这为具有主要ω-羟化酶活性的细胞色素P450提供了结构上的见识。无配体和底物结合的CYP124的结构揭示了底物结合引起的几种差异,包括I螺旋的重组和结合底物并从溶剂中排除溶剂的F,G和D螺旋元素封闭的活性位点。疏水活性位点腔。观察到的区域特异性催化活性表明CYP124在相关的Mtb甲基支化脂质的生理氧化中的作用。本文报道的酶学特异性和结构为CYP124特异性抑制剂的设计和测试提供了一个支架。

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