首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >SyrB2 in syringomycin E biosynthesis is a nonheme Fe~‖ α-ketoglutarate- and O_2-dependent halogenase
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SyrB2 in syringomycin E biosynthesis is a nonheme Fe~‖ α-ketoglutarate- and O_2-dependent halogenase

机译:丁香霉素E生物合成中的SyrB2是非血红素Fe〜α-酮戊二酸和O_2依赖性卤化酶

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摘要

The nine-residue lipodepsipeptide syringomycin E, elaborated as a phytotoxin by Pseudomonas syringae pv. syringae B301D contains a 4-Cl-L-Thr-9 moiety where failure to chlorinate results in a 3-fold drop in biological activity. The proteins SyrB1 and SyrB2 encoded by the biosynthetic cluster are shown to act as a substrate and enzyme pair for SyrB2-mediated chlorination of the aminoacyl-S-enzyme L-Thr-S-SyrB1. SyrB2 is a member of the nonheme Fe~‖ α-ketoglutarate-dependent enzyme superfamily, and requires O_2 and α-ketoglutarate as well as chloride ion to carry out monochlo-rination of the -CH_3 group of L-Thr-S-SyrB1. Chlorination of L-Thr-S-SyrB1 was validated by thioesterase-mediated release of L-Thr and 4-Cl-L-Thr, N-derivatization as fluorescent isoindoles, and HPLC separation compared with authentic standards. Incubations with L-[~(14)C]Thr and [~(36)Cl~-] as well as MS of the released products further validated identification. Enzymatic oxidative halogenation is a previously uncharacterized reaction type for nonheme Fe~‖ enzymes and may be the general mode for biosynthetic halogenation of aliphatic carbons of natural products.
机译:丁香假单胞菌pv将9种残基的脂肽肽丁香霉素E制成植物毒素。丁香花B301D包含一个4-Cl-L-Thr-9部分,如果未进行氯化,则会导致其生物活性下降3倍。由生物合成簇编码的蛋白质SyrB1和SyrB2被显示为SyrB2介导的氨酰基S酶L-Thr-S-SyrB1氯化反应的底物和酶对。 SyrB2是非血红素Fe〜αα-酮戊二酸依赖性酶超家族的成员,并且需要O_2和α-酮戊二酸以及氯离子对L-Thr-S-SyrB1的-CH_3基团进行单氯冲洗。 L-Thr-S-SyrB1的氯化反应通过硫酯酶介导的L-Thr和4-Cl-L-Thr的释放,N-衍生化为荧光异吲哚和与真实标准品进行HPLC分离来验证。用L- [〜(14)C] Thr和[〜(36)Cl〜-]以及释放产物的MS进行的孵育进一步验证了鉴定。酶促氧化卤化是非血红素Fe-酶以前无法表征的反应类型,可能是天然产物脂肪族碳的生物合成卤化的一般模式。

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