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Characterization of SafC a Catechol 4-O-Methyltransferase Involved in Saframycin Biosynthesis

机译:SafC的表征一种参与萨弗霉素生物合成的儿茶酚4-O-甲基转移酶

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摘要

Members of the saframycin/safracin/ecteinascidin family of peptide natural products are potent antitumor agents currently under clinical development. Saframycin MX1, from Myxococcus xanthus, is synthesized by a nonribosomal peptide synthetase, SafAB, and an O-methyltransferase, SafC, although other proteins are likely involved in the pathway. SafC was overexpressed in Escherichia coli, purified to homogeneity, and assayed for its ability to methylate a variety of substrates. SafC was able to catalyze the O-methylation of catechol derivatives but not phenols. Among the substrates tested, the best substrate for SafC was l-dihydroxyphenylalanine (l-dopa), which was methylated specifically in the 4′-O position (kcat/Km = 5.5 × 103 M−1 s−1). SafC displayed less activity on other catechol derivatives, including catechol, dopamine, and caffeic acid. The more labile l-5′-methyldopa was an extremely poor substrate for SafC (kcat/Km = ∼2.8 × 10−5 M−1 s−1). l-Dopa thioester derivatives were also much less reactive than l-dopa. These results indicate that SafC-catalyzed 4′-O-methylation of l-dopa occurs prior to 5′-C-methylation, suggesting that 4′-O-methylation is likely the first committed step in the biosynthesis of saframycin MX1. SafC has biotechnological potential as a methyltransferase with unique regioselectivity.
机译:肽天然产物萨法霉素/萨法霉素/ ecteinascidin家族的成员是目前正在临床开发中的有效抗肿瘤剂。来自黄色粘球菌的Saframycin MX1是通过非核糖体肽合成酶SafAB和O-甲基转移酶SafC合成的,尽管其他蛋白质可能也参与了该途径。 SafC在大肠杆菌中过表达,纯化至均一,并测定其甲基化多种底物的能力。 SafC能够催化邻苯二酚衍生物的O-甲基化,但不能催化苯酚。在测试的底物中,SafC的最佳底物是1-二羟基苯丙氨酸(l-多巴),它在4'-O位置被专门甲基化(kcat / Km = 5.5×10 3 M -1 s -1 )。 SafC对其他儿茶酚衍生物(包括儿茶酚,多巴胺和咖啡酸)的活性较低。较不稳定的l-5'-甲基多巴是SafC的极差底物(kcat / Km =约2.8×10 -5 M -1 s -1 )。左旋多巴硫酯衍生物的反应性也比左旋多巴低得多。这些结果表明,SafC催化1-多巴的4'-O-甲基化发生在5'-C-甲基化之前,这表明4'-O-甲基化可能是萨弗霉素MX1生物合成中的第一步。 SafC具有独特的区域选择性,具有作为甲基转移酶的生物技术潜力。

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