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一种基于碳酸酐酶的改进型人工转移氢化酶定向进化的双锚定策略

A Dual Anchoring Strategy for the Directed Evolution of Improved Artificial Transfer Hydrogenases Based on Carbonic Anhydrase.

作者信息

Stein Alina, Chen Dongping, Igareta Nico V, Cotelle Yoann, Rebelein Johannes G, Ward Thomas R

机构信息

Department of Chemistry, University of Basel, BPR 1096, Mattenstrasse 24a, 4058 Basel, Switzerland.

National Center of Competence in Research "Molecular Systems Engineering", 4058 Basel, Switzerland.

出版信息

ACS Cent Sci. 2021 Nov 24;7(11):1874-1884. doi: 10.1021/acscentsci.1c00825. Epub 2021 Nov 11.

Abstract

Artificial metalloenzymes result from anchoring a metal cofactor within a host protein. Such hybrid catalysts combine the selectivity and specificity of enzymes with the versatility of (abiotic) transition metals to catalyze new-to-nature reactions in an evolvable scaffold. With the aim of improving the localization of an arylsulfonamide-bearing iridium-pianostool catalyst within human carbonic anhydrase II (hCAII) for the enantioselective reduction of prochiral imines, we introduced a covalent linkage between the host and the guest. Herein, we show that a judiciously positioned cysteine residue reacts with a nitropicolinamide ligand bound to iridium to afford an additional sulfonamide covalent linkage. Three rounds of directed evolution, performed on the dually anchored cofactor, led to improved activity and selectivity for the enantioselective reduction of harmaline (up to 97% () and >350 turnovers on a preparative scale). To evaluate the substrate scope, the best hits of each generation were tested with eight substrates. X-ray analysis, carried out at various stages of the evolutionary trajectory, was used to scrutinize (i) the nature of the covalent linkage between the cofactor and the host as well as (ii) the remodeling of the substrate-binding pocket.

摘要

人工金属酶是通过将金属辅因子锚定在宿主蛋白中产生的。这类杂化催化剂将酶的选择性和特异性与(非生物)过渡金属的多功能性结合起来,在一个可进化的支架中催化自然界中未曾有过的新反应。为了提高含芳基磺酰胺的铱钢琴凳催化剂在人碳酸酐酶II(hCAII)中的定位,以实现前手性亚胺的对映选择性还原,我们在宿主和客体之间引入了共价连接。在此,我们表明,一个精心定位的半胱氨酸残基与结合到铱上的硝基吡啶酰胺配体反应,形成了一个额外的磺酰胺共价连接。对双重锚定的辅因子进行三轮定向进化,提高了对哈马灵对映选择性还原的活性和选择性(高达97% (),在制备规模上周转数>350)。为了评估底物范围,用八种底物测试了每一代的最佳结果。在进化轨迹的不同阶段进行的X射线分析,用于仔细研究(i)辅因子与宿主之间共价连接的性质以及(ii)底物结合口袋的重塑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b77d/8620556/19382ec6ba4e/oc1c00825_0001.jpg

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