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Chemoenzymatic Platform for Synthesis of Chiral Organofluorines Based on Type II Aldolases

机译:基于II型Aldolase的手性有机氟磺酸碱基合成化学酶平台

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摘要

Aldolases are C-C bond forming enzymes that have become prominent tools for sustainable synthesis of complex synthons. However, enzymatic methods of fluorine incorporation into such compounds are lacking due to the rarity of fluorine in nature. Recently, the use of fluoropyruvate as a non-native aldolase substrate has arisen as a solution. Here, we report that the type II HpcH aldolases efficiently catalyze fluoropyruvate addition to diverse aldehydes, with exclusive (3S)-selectivity at fluorine that is rationalized by DFT calculations on a mechanistic model. We also measure the kinetic parameters of aldol addition and demonstrate engineering of the hydroxyl group stereoselectivity. Our aldolase collection is then employed in the chemoenzymatic synthesis of novel fluoroacids and ester derivatives in high stereopurity (d.r. 80-98 %). The compounds made available by this method serve as precursors to fluorinated analogs of sugars, amino acids, and other valuable chiral building blocks.
机译:醛胶酶是C-C键形成酶,其已成为复杂合成寡合可持续合成的突出工具。 然而,由于自然界中的氟的罕见,氟掺入这种化合物中的酶法缺乏。 最近,作为非天然醛醇酶底物作为溶液使用氟化糖产物。 在这里,我们报告II型HPCH醛糖酶有效地催化氟吡喃酸盐添加到多样化的醛外,在机械模型上的DFT计算合理化的氟的独特(3S)。 我们还测量醛醇加入的动力学参数,并证明羟基立体选择性的工程。 然后使用我们的醛糖酶集合在高分子(D.R.80-98%)中的新型氟酸和酯衍生物的化学酶合成中。 通过该方法提供的化合物用作含糖,氨基酸和其他有价值的手性建筑物块的氟化类似物的前体。

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