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Cytochrome P450 Monooxygenase CYP139 Family Involved in the Synthesis of Secondary Metabolites in 824 Mycobacterial Species

机译:细胞色素P450单加氧酶CYP139家族参与824个分枝杆菌属次生代谢产物的合成

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摘要

Tuberculosis (TB) is one of the top infectious diseases causing numerous human deaths in the world. Despite enormous efforts, the physiology of the causative agent, Mycobacterium tuberculosis, is poorly understood. To contribute to better understanding the physiological capacity of these microbes, we have carried out extensive in silico analyses of the 1111 mycobacterial species genomes focusing on revealing the role of the orphan cytochrome P450 monooxygenase (CYP) CYP139 family. We have found that CYP139 members are present in 894 species belonging to three mycobacterial groups: M. tuberculosis complex (850-species), Mycobacterium avium complex (34-species), and non-tuberculosis mycobacteria (10-species), with all CYP139 members belonging to the subfamily “A”. CYP139 members have unique amino acid patterns at the CXG motif. Amino acid conservation analysis placed this family in the 8th among CYP families belonging to different biological domains and kingdoms. Biosynthetic gene cluster analyses have revealed that 92% of CYP139As might be associated with producing different secondary metabolites. Such enhanced secondary metabolic potentials with the involvement of CYP139A members might have provided mycobacterial species with advantageous traits in diverse niches competing with other microbial or viral agents, and might help these microbes infect hosts by interfering with the hosts’ metabolism and immune system.
机译:结核病(TB)是导致世界上许多人死亡的主要传染病之一。尽管付出了巨大的努力,人们对病原体结核分枝杆菌的生理却知之甚少。为了有助于更好地了解这些微生物的生理能力,我们对1111个分枝杆菌物种基因组进行了广泛的计算机分析,重点是揭示孤儿细胞色素P450单加氧酶(CYP)CYP139家族的作用。我们发现CYP139成员存在于894个物种中,属于三个分枝杆菌类:结核分枝杆菌复合体(850种),鸟分枝杆菌复合体(34种)和非结核分枝杆菌(10种),所有CYP139属于“ A”子家族的成员。 CYP139成员在CXG基序上具有独特的氨基酸模式。氨基酸保守性分析使该家族在属于不同生物学域和王国的CYP家族中排名第八。生物合成基因簇分析表明,CYP139A的92%可能与产生不同的次生代谢产物有关。 CYP139A成员参与的这种增强的次级代谢潜能可能为分枝杆菌物种提供了与其他微生物或病毒制剂竞争的优势,并可能通过干扰宿主的代谢和免疫系统来帮助这些微生物感染宿主。

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