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共价有机框架用于重组酶的纯化和非均相生物催化。

Covalent Organic Frameworks for the Purification of Recombinant Enzymes and Heterogeneous Biocatalysis.

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research, Kolkata, Mohanpur 741246, India.

Centre for Advanced Functional Materials, Indian Institute of Science Education and Research, Kolkata, Mohanpur 741246, India.

出版信息

J Am Chem Soc. 2024 Jan 10;146(1):858-867. doi: 10.1021/jacs.3c11169. Epub 2023 Dec 30.

Abstract

Recombinant enzymes have gained prominence due to their diverse functionalities and specificity and are often a greener alternative in biocatalysis. This context makes purifying recombinant enzymes from host cells and other impurities crucial. The primary goal is to isolate the pure enzyme of interest and ensure its stability under ambient conditions. Covalent organic frameworks (COFs), renowned for their well-ordered structure and permeability, offer a promising approach for purifying histidine-tagged (His-tagged) enzymes. Furthermore, immobilizing enzymes within COFs represents a growing field in heterogeneous biocatalysis. In this study, we have developed a flow-based technology utilizing a nickel-infused covalent organic framework (Ni-TpBpy COF) to combine two distinct processes: the purification of His-tagged enzymes and the immobilization of enzymes simultaneously. Our work primarily focuses on the purification of three His-tagged enzymes β-glucosidase, cellobiohydrolase, and endoglucanase as well as two proteins with varying molecular weights, namely, green fluorescent protein (27 kDa) and BG Rho (88 kDa). We employed Ni-TpBpy as a column matrix to showcase the versatility of our system. Additionally, we successfully obtained a Ni-TpBpy COF immobilized with enzymes, which can serve as a heterogeneous catalyst for the hydrolysis of -nitrophenyl-β-d-glucopyranoside and carboxymethylcellulose. These immobilized enzymes demonstrated catalytic activity comparable to that of their free counterparts, with the added advantages of recyclability and enhanced stability under ambient conditions for an extended period, ranging from 60 to 90 days. This contrasts with the free enzymes, which do not maintain their activity as effectively over time.

摘要

由于具有多样化的功能和特异性,重组酶备受关注,并且在生物催化中通常是一种更环保的选择。在这种情况下,从宿主细胞和其他杂质中纯化重组酶至关重要。主要目标是分离出感兴趣的纯酶,并确保其在环境条件下的稳定性。共价有机骨架(COFs)以其有序的结构和渗透性而闻名,为纯化组氨酸标记(His 标记)酶提供了一种很有前途的方法。此外,将酶固定在 COFs 内是异相生物催化中一个不断发展的领域。在这项研究中,我们开发了一种基于流动的技术,利用负载镍的共价有机骨架(Ni-TpBpy COF)来结合两个不同的过程:His 标记酶的纯化和酶的固定化。我们的工作主要集中在三种 His 标记酶(β-葡萄糖苷酶、纤维二糖水解酶和内切葡聚糖酶)以及两种分子量不同的蛋白质(绿色荧光蛋白(27 kDa)和 BG Rho(88 kDa)的纯化上。我们使用 Ni-TpBpy 作为柱基质来展示我们系统的多功能性。此外,我们还成功地获得了固定有酶的 Ni-TpBpy COF,它可以作为水解 - 硝基苯-β-D-葡萄糖苷和羧甲基纤维素的非均相催化剂。这些固定化酶表现出与游离酶相当的催化活性,并且具有可回收性和在环境条件下延长时间(60 至 90 天)的稳定性增强的优点,而游离酶则不能随着时间的推移有效地保持其活性。

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