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首页> 外文期刊>Nature chemical biology >Squalene hopene cyclases are protonases for stereoselective Bronsted acid catalysis
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Squalene hopene cyclases are protonases for stereoselective Bronsted acid catalysis

机译:角鲨烯希望环化酶是用于立体选择性布朗斯台德酸催化的质子酶

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摘要

For many important reactions catalyzed in chemical laboratories, the corresponding enzymes are missing, representing a restriction in biocatalysis. Although nature provides highly developed machineries appropriate to catalyze such reactions, their potential is often ignored. This also applies to Bronsted acid catalysis, a powerful method to promote a myriad of chemical transformations. Here, we report on the unique protonation machinery of a squalene hopene cyclase (SHC). Active site engineering of this highly evolvable enzyme yielded a platform for enzymatic Bronsted acid catalysis in water. This is illustrated by activation of different functional groups (alkenes, epoxides and carbonyls), enabling the highly stereoselective syntheses of various cyclohexanoids while uncoupling SHC from polycyclization chemistry. This work highlights the potential of systematic investigation on nature's catalytic machineries to generate unique catalysts.
机译:对于化学实验室中催化的许多重要反应,缺少相应的酶,这限制了生物催化。尽管自然界提供了高度发达的机制来催化此类反应,但它们的潜力常常被忽略。这也适用于布朗斯台德酸催化,这是促进多种化学转化的有力方法。在这里,我们报告角鲨烯单环环化酶(SHC)的独特质子化机制。这种高度进化的酶的活性位点工程为水中的布朗斯台德酸酶催化提供了一个平台。通过不同官能团(烯烃,环氧化物和羰基)的活化可以说明这一点,从而在将SHC与多环化化学脱钩的同时,实现了各种环己酮的高度立体选择性合成。这项工作强调了对自然界的催化机制进行系统研究以产生独特催化剂的潜力。

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