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首页> 外文期刊>The Biochemical Journal >Structural and functional characterisation of the cytochrome P450 enzyme CYP268A2 from em>Mycobacterium marinum/em>
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Structural and functional characterisation of the cytochrome P450 enzyme CYP268A2 from em>Mycobacterium marinum/em>

机译:细胞色素P450酶CYP268A2的结构和功能表征来自< em>分枝杆菌Marinum& / em>

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摘要

Members of the cytochrome P450 monooxygenase family CYP268 are found across a broad range of Mycobacterium species including the pathogens Mycobacterium avium , M. colombiense , M. kansasii , and M . marinum . CYP268A2, from M. marinum , which is the first member of this family to be studied, was purified and characterised. CYP268A2 was found to bind a variety of substrates with high affinity, including branched and straight chain fatty acids (C10–C12), acetate esters, and aromatic compounds. The enzyme was also found to bind phenylimidazole inhibitors but not larger azoles, such as ketoconazole. The monooxygenase activity of CYP268A2 was efficiently reconstituted using heterologous electron transfer partner proteins. CYP268A2 hydroxylated geranyl acetate and tran s-pseudoionone at a terminal methyl group to yield ( 2E , 6E )-8-hydroxy-3,7-dimethylocta-2,6-dien-1-yl acetate and ( 3E , 5E , 9E )-11-hydroxy-6,10-dimethylundeca-3,5,9-trien-2-one, respectively. The X-ray crystal structure of CYP268A2 was solved to a resolution of 2.0?? with trans -pseudoionone bound in the active site. The overall structure was similar to that of the related phytanic acid monooxygenase CYP124A1 enzyme from Mycobacterium tuberculosis , which shares 41% sequence identity. The active site is predominantly hydrophobic, but includes the Ser99 and Gln209 residues which form hydrogen bonds with the terminal carbonyl group of the pseudoionone. The structure provided an explanation on why CYP268A2 shows a preference for shorter substrates over the longer chain fatty acids which bind to CYP124A1 and the selective nature of the catalysed monooxygenase activity.
机译:细胞色素P450单氧基酶系列CYP268的成员在广泛的分枝杆菌种类中发现,包括病原体厌恶的病原体,M.Colombiense,M. kansasii和M。马林木。 CYP268A2,来自M. Marinum的CYP268A2是纯化和表征该家族的第一个成员。发现CYP268A2与具有高亲和力的各种底物结合,包括支链和直链脂肪酸(C10-C12),乙酸酯和芳族化合物。还发现酶结合苯基咪唑抑制剂,但不是更大的氮孔,例如酮康唑。使用异源电子转移伴侣蛋白有效地重构CYP268A2的单氧基酶活性。 CYP268A2在末端甲基的CYP268A2羟基化乙酸乙酸乙酸乙酸乙酸盐和Tran S-Pseudoionone,得到产率(2E,6E)-8-羟基-3,7-二甲基-2,6-DIEN-1-基乙酸乙酯和(3E,5E,9E) -11-羟基-6,10-二甲基癸符-3,5,9-三年级-2-一体。 CYP268A2的X射线晶体结构求解为2.0的分辨率在活跃点绑定跨翼酮酮。总体结构与来自结核分枝杆菌的相关植物酸单氧基酶CYP124A1酶类似,其份额为41%的序列同一性。活性位点主要是疏水性的,但包括与伪醌的末端羰基形成氢键的SER99和GLN209残基。该结构提供了关于为什么CYP268A2显示CYP268A2的偏好对于与CYP124A1结合的较长链脂肪酸上的较短底物的偏好以及催化的单氧化酶活性的选择性性质。

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