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通过 Knölker 配合物共价接枝到木聚糖酶制备的人工铁氢化酶:在水中对芳基酮的不对称氢化中的应用。

Artificial iron hydrogenase made by covalent grafting of Knölker's complex into xylanase: Application in asymmetric hydrogenation of an aryl ketone in water.

机构信息

Institut de Chimie Moléculaire et des Matériaux d'Orsay (ICMMO), UMR 8182 CNRS, Laboratoire de Chimie Bioorganique et Bioinorganique, Université Paris-sud, Université Paris-Saclay, Orsay cedex, France.

Centre Armand-Frappier Santé Biotechnologie, Institut National de la Recherche Scientifique (INRS), Université du Québec, Réseau International des Instituts Pasteur, Laval (Québec), Canada.

出版信息

Biotechnol Appl Biochem. 2020 Jul;67(4):563-573. doi: 10.1002/bab.1906. Epub 2020 May 23.

Abstract

We report a new artificial hydrogenase made by covalent anchoring of the iron Knölker's complex to a xylanase S212C variant. This artificial metalloenzyme was found to be able to catalyze efficiently the transfer hydrogenation of the benchmark substrate trifluoroacetophenone by sodium formate in water, yielding the corresponding secondary alcohol as a racemic. The reaction proceeded more than threefold faster with the XlnS212CK biohybrid than with the Knölker's complex alone. In addition, efficient conversion of trifluoroacetophenone to its corresponding alcohol was reached within 60 H with XlnS212CK, whereas a ≈2.5-fold lower conversion was observed with Knölker's complex alone as catalyst. Moreover, the data were rationalized with a computational strategy suggesting the key factors of the selectivity. These results suggested that the Knölker's complex was most likely flexible and could experience free rotational reorientation within the active-site pocket of Xln A, allowing it to access the subsite pocket populated by trifluoroacetophenone.

摘要

我们报告了一种新的人工氢化酶,它是通过共价键将铁 Knölker 配合物锚定到木聚糖酶 S212C 变体上制成的。这种人工金属酶被发现能够有效地通过水合甲酸钠催化基准底物三氟乙酰苯的转移氢化反应,生成相应的外消旋仲醇。与单独的 Knölker 配合物相比,XlnS212CK 生物杂种的反应速度快了三倍以上。此外,XlnS212CK 可以在 60 H 内将三氟乙酰苯有效转化为其相应的醇,而单独使用 Knölker 配合物作为催化剂时,转化率约低 2.5 倍。此外,数据还通过一种计算策略进行了合理化,该策略表明了选择性的关键因素。这些结果表明,Knölker 配合物很可能是灵活的,可以在 Xln A 的活性位点口袋内经历自由旋转重新定向,从而使其能够进入由三氟乙酰苯填充的亚位点口袋。

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