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General base-general acid catalysis by terpenoid cyclases

机译:萜类环化酶催化的一般碱基酸

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Terpenoid cyclases catalyze the most complex reactions in biology, in that more than half of the substrate carbon atoms often undergo changes in bonding during the course of a multistep cyclization cascade that proceeds through multiple carbocation intermediates. Many cyclization mechanisms require stereospecific deprotonation and reprotonation steps, and most cyclization cascades are terminated by deprotonation to yield an olefin product. The first bacterial terpenoid cyclase to yield a crystal structure was pentalenene synthase from Streptomyces exfoliatus UC5319. This cyclase generates the hydrocarbon precursor of the pentalenolactone family of antibiotics. The structures of pentalenene synthase and other terpenoid cyclases reveal predominantly nonpolar active sites typically lacking amino acid side chains capable of serving general base-general acid functions. What chemical species, then, enables the Bronsted acid-base chemistry required in the catalytic mechanisms of these enzymes? The most likely candidate for such general base-general acid chemistry is the co-product inorganic pyrophosphate. Here, we briefly review biological and nonbiological systems in which phosphate and its derivatives serve general base and general acid functions in catalysis. These examples highlight the fact that the Bronsted acid-base activities of phosphate derivatives are comparable to the Bronsted acid-base activities of amino acid side chains.
机译:萜类环化酶催化生物学上最复杂的反应,因为在通过多个碳正离子中间体进行的多步环化级联过程中,超过一半的底物碳原子经常发生键合变化。许多环化机理需要立体定向的去质子化和再质子化步骤,并且大多数环化级联通过去质子化而终止,以产生烯烃产物。第一个产生晶体结构的细菌类萜环化酶是来自链霉菌UC5319的戊烯合酶。这种环化酶产生了戊烯戊内酯家族的碳氢化合物前体。戊烯合酶和其他萜类环化酶的结构显示主要是非极性活性位点,通常缺少能够发挥一般碱基-一般酸功能的氨基酸侧链。那么,什么化学种类能够实现这些酶的催化机理所需的布朗斯台德酸碱化学反应?这种通用的碱通用酸化学方法最有可能的候选产品是副产品无机焦磷酸盐。在这里,我们简要回顾一下生物和非生物系统,其中磷酸盐及其衍生物在催化中具有一般的碱和一般的酸功能。这些例子突出了以下事实:磷酸盐衍生物的布朗斯台德酸碱活性与氨基酸侧链的布朗斯台德酸碱活性相当。

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