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首页> 外文期刊>Angewandte Chemie >A Single Enzyme Transforms a Carboxylic Acid into a Nitrile through an Amide Intermediate
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A Single Enzyme Transforms a Carboxylic Acid into a Nitrile through an Amide Intermediate

机译:单一酶通过酰胺中间体将羧酸转化为腈

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摘要

The biosynthesis of nitriles is known to occur through specialized pathways involving multiple enzymes; however, in bacterial and archeal biosynthesis of 7-deazapurines, a single enzyme, ToyM, catalyzes the conversion of the carboxylic acid containing 7-carboxy-7-deazaguanine (CDG) into its corresponding nitrile, 7-cyano-7-deazaguanine (preQ(0)). The mechanism of this unusual direct transformation was shown to proceed via the adenylation of CDG, which activates it to form the newly discovered amide intermediate 7-amido-7-deazaguanine (ADG). This is subsequently dehydrated to form the nitrile in a process that consumes a second equivalent of ATP. The authentic amide intermediate is shown to be chemically and kinetically competent. The ability of ToyM to activate two different substrates, an acid and an amide, accounts for this unprecedented one-enzyme catalysis of nitrile synthesis, and the differential rates of these two half reactions suggest that this catalytic ability is derived from an amide synthetase that gained a new function.
机译:已知腈的生物合成是通过涉及多种酶的专门途径发生的。然而,在细菌和古细菌的7-脱氮嘌呤生物合成中,一种酶ToyM催化含有7-羧基-7-脱氮鸟嘌呤(CDG)的羧酸转化为其相应的腈7-氰基-7-脱氮鸟嘌呤(preQ (0))。已表明这种异常直接转化的机理是通过CDG的腺苷酸化来进行的,它激活了CDG形成新发现的酰胺中间体7-酰胺基-7-脱氮鸟嘌呤(ADG)。随后在消耗第二当量ATP的过程中将其脱水形成腈。真实的酰胺中间体显示出在化学和动力学上的能力。 ToyM激活两种不同底物(酸和酰胺)的能力是腈合成过程中这种空前的单酶催化反应的原因,这两个半反应的差异速率表明该催化能力源自获得的酰胺合成酶一个新功能。

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