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首页> 外文期刊>Angewandte Chemie >Enzyme Activity by Design: An Artificial Rhodium Hydroformylase for Linear Aldehydes
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Enzyme Activity by Design: An Artificial Rhodium Hydroformylase for Linear Aldehydes

机译:设计酶活性:用于线性醛的人工铑加氢甲酶

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摘要

Artificial metalloenzymes (ArMs) are hybrid catalysts that offer a unique opportunity to combine the superior performance of natural protein structures with the unnatural reactivity of transition-metal catalytic centers. Therefore, they provide the prospect of highly selective and active catalytic chemical conversions for which natural enzymes are unavailable. Herein, we show how by rationally combining robust site-specific phosphine bioconjugation methods and a lipid-binding protein (SCP-2L), an artificial rhodium hydroformylase was developed that displays remarkable activities and selectivities for the biphasic production of long-chain linear aldehydes under benign aqueous conditions. Overall, this study demonstrates that judiciously chosen protein-binding scaffolds can be adapted to obtain metalloenzymes that provide the reactivity of the introduced metal center combined with specifically intended product selectivity.
机译:人造金属酶(武器)是杂化催化剂,其提供了结合天然蛋白质结构的优异性能与过渡金属催化中心的非天然反应性的独特机会。 因此,它们提供了高度选择性和活性催化化学转化的前景,天然酶不可用。 在此,我们展示了合理组合的鲁棒场特异性磷化氢生物谐波方法和脂质结合蛋白(SCP-2L),开发了一种人造铑加氢甲酶,其显示出显着的活性和选择性的长链线性醛的活性和选择性 良性含水条件。 总体而言,本研究表明,明智地选择的蛋白质结合支架可以适于获得提供引入的金属中心的反应性与特异性预期产品选择性结合的金属酶。

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