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首页> 外文期刊>Scientific reports. >Molecular evolutionary dynamics of cytochrome P450 monooxygenases across kingdoms: Special focus on mycobacterial P450s
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Molecular evolutionary dynamics of cytochrome P450 monooxygenases across kingdoms: Special focus on mycobacterial P450s

机译:跨越王国细胞色素P450单氧结酶的分子进化动力学:特别关注分枝杆菌P450S

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摘要

Since the initial identification of cytochrome P450 monooxygenases (CYPs/P450s), great progress has been made in understanding their structure-function relationship, diversity and application in producing compounds beneficial to humans. However, the molecular evolution of P450s in terms of their dynamics both at protein and DNA levels and functional conservation across kingdoms still needs investigation. In this study, we analyzed 17 598 P450s belonging to 113 P450 families (bacteria -42; fungi -19; plant -28; animal -22; plant and animal -1 and common P450 family -1) and found highly conserved and rapidly evolving P450 families. Results suggested that bacterial P450s, particularly P450s belonging to mycobacteria, are highly conserved both at protein and DNA levels. Mycobacteria possess the highest P450 diversity percentage compared to other microbes and have a high coverage of P450s (≥1%) in their genomes, as found in fungi and plants. Phylogenetic and functional analyses revealed the functional conservation of P450s despite belonging to different biological kingdoms, suggesting the adherence of P450s to their innate function such as their involvement in either generation or oxidation of steroids and structurally related molecules, fatty acids and terpenoids. This study's results offer new understanding of the dynamic structural nature of P450s.
机译:由于初始鉴定细胞色素P450单氧基酶(CYPS / P450s),因此在了解其结构功能关系,多样性和应用方面,在生产有利于人类的化合物的情况下,已经取得了巨大进展。然而,在蛋白质和DNA水平和跨国公司的功能保护方面,P450s的分子演进仍然需要调查。在这项研究中,我们分析了17个598 P450S属于113 P450家族(细菌-42; Fungi -19;植物-28; Animal -22;植物和动物-1和普通P450家庭-1),并发现高度保守和快速发展P450家庭。结果表明,在蛋白质和DNA水平下,细菌P450s,特别是属于分枝杆菌的P450s。与其他微生物相比,分枝杆菌具有最高的P450多样性百分比,并且在真菌和植物中发现它们的基因组中P450s(≥1%)的高覆盖率。系统发育和功能分析显示,尽管属于不同的生物王国,但表明P450s对其先天功能的依赖性,例如它们在类固醇和结构相关分子,脂肪酸和三萜类化合物中的发生或氧化等中的依次依赖。本研究的结果为P450S的动态结构性质提供了新的了解。

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