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Expression of Genes for a Flavin Adenine Dinucleotide-Binding Oxidoreductase and a Methyltransferase from Mycobacterium chlorophenolicum Is Necessary for Biosynthesis of 10-Methyl Stearic Acid from Oleic Acid in Escherichia coli

机译:黄素腺嘌呤二核苷酸结合氧化还原酶和甲基转移酶的基因表达从氯酚分枝杆菌是从大肠杆菌中的油酸生物合成10甲基硬脂酸所必需的。

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摘要

In living organisms, modified fatty acids are crucial for the functions of the cellular membranes and storage lipids where the fatty acids are esterified. Some bacteria produce a typical methyl-branched fatty acid, i.e., 10-methyl stearic acid (19:0Me10). The biosynthetic pathway of 19:0Me10 in vivo has not been demonstrated clearly yet. It had been speculated that 19:0Me10 is synthesized from oleic acid (18:1Δ9) by S-adenosyl-L-methionine-dependent methyltransfer and NADPH-dependent reduction via a methylenated intermediate, 10-methyelene octadecanoic acid. Although the recombinant methyltransferases UmaA and UfaA1 from Mycobacterium tuberculosis H37Rv synthesize 19:0Me10 from 18:1Δ9 and NADPH in vitro, these methyltransferases do not possess any domains functioning in the redox reaction. These findings may contradict the two-step biosynthetic pathway. We focused on novel S-adenosyl-L-methionine-dependent methyltransferases from Mycobacterium chlorophenolicum that are involved in 19:0Me10 synthesis and selected two candidate proteins, WP_048471942 and WP_048472121, by a comparative genomic analysis. However, the heterologous expression of these candidate genes in Escherichia coli cells did not produce 19:0Me10. We found that one of the candidate genes, WP_048472121, was collocated with another gene, WP_048472120, that encodes a protein containing a domain associated with flavin adenine dinucleotide-binding oxidoreductase activity. The co-expression of these proteins (hereafter called BfaA and BfaB, respectively) led to the biosynthesis of 19:0Me10 in E. coli cells via the methylenated intermediate.
机译:在活生物体中,改性脂肪酸对于脂肪酸被酯化的细胞膜和储存脂质的功能至关重要。一些细菌产生典型的甲基支链脂肪酸,即10-甲基硬脂酸(19:0Me10)。 19:0Me10在体内的生物合成途径尚未明确证实。据推测,通过亚甲基化的中间体10-亚甲基十八碳烯酸,通过S-腺苷-L-甲硫氨酸依赖性甲基转移和NADPH依赖性还原,由油酸(18:1Δ9)合成19:0Me10。尽管来自结核分枝杆菌H37Rv的重组甲基转移酶UmaA和UfaA1在体外从18:1Δ9和NADPH合成了19:0Me10,但是这些甲基转移酶不具有在氧化还原反应中起作用的任何结构域。这些发现可能与两步生物合成途径相矛盾。我们集中于氯酚分枝杆菌的新型S-腺苷-L-蛋氨酸依赖性甲基转移酶,它们参与19:0Me10的合成,并通过比较基因组分析选择了两个候选蛋白,WP_048471942和WP_048472121。但是,这些候选基因在大肠杆菌细胞中的异源表达不产生19:0Me10。我们发现其中一个候选基因WP_048472121与另一个基因WP_048472120并置,该基因编码一种蛋白质,该蛋白质包含与黄素腺嘌呤二核苷酸结合氧化还原酶活性相关的域。这些蛋白质(以下分别称为BfaA和BfaB)的共表达导致通过亚甲基化中间体在大肠杆菌细胞中生物合成19:0Me10。

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