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蛋白连接辅助的 HRP 片段重组用于在大肠杆菌中轻松生产 HRP 融合蛋白。

Protein Ligation-Assisted Reconstitution of Split HRP Fragments for Facile Production of HRP Fusion Proteins in E. coli.

机构信息

Department of Biochemistry, Kangwon National University, Chuncheon, 24341, South Korea.

Department of Convergence Medicine, Yonsei University Wonju College of Medicine, Wonju, 26426, South Korea.

出版信息

Chembiochem. 2023 Jun 1;24(11):e202200700. doi: 10.1002/cbic.202200700. Epub 2023 May 4.

Abstract

Horseradish peroxidase (HRP) is a pivotal biocatalyst for biosensor development and fine chemical synthesis. HRP proteins are mostly extracted and purified from the roots of horseradish because the solubility and productivity of recombinant HRP in bacteria are significantly low. In this study, we investigate the reconstitution system of split HRP fragments to improve its soluble expression levels in E. coli allowing the cost-effective production of bioactive HRPs. To promote the effective association between two HRP fragments (HRPn and HRPc), we exploit SpyTag-SpyCatcher chemistry, a versatile protein coupling method with high affinity and selectivity. Each HRP fragment was genetically fused with SpyTag and SpyCatcher, respectively, exhibiting soluble expression in the E. coli cytoplasm. The engineered split HRPs were effectively and irreversibly reconstituted into a biologically active and stable assembly that can catalyze intrinsic enzymatic reactions. Compared to the chaperone co-expression system, our approach shows that the production yield of soluble HRP is comparable, but the purity of the final product is relatively high. Therefore, our results can be applied to the high-yield production of recombinant HRP variants and other difficult-to-express proteins in bacteria without complex downstream processes.

摘要

辣根过氧化物酶(HRP)是生物传感器开发和精细化学品合成的关键生物催化剂。HRP 蛋白主要从辣根的根部提取和纯化,因为重组 HRP 在细菌中的溶解度和产率都很低。在这项研究中,我们研究了 HRP 片段的重新组装系统,以提高其在大肠杆菌中的可溶性表达水平,从而实现生物活性 HRP 的经济高效生产。为了促进两个 HRP 片段(HRPn 和 HRPc)之间的有效结合,我们利用了 SpyTag-SpyCatcher 化学,这是一种具有高亲和力和选择性的多功能蛋白偶联方法。每个 HRP 片段分别与 SpyTag 和 SpyCatcher 进行基因融合,在大肠杆菌细胞质中表现出可溶性表达。工程化的 HRP 片段可以有效地不可逆地重新组装成具有生物活性和稳定性的组装体,能够催化内在的酶促反应。与伴侣蛋白共表达系统相比,我们的方法表明,可溶性 HRP 的产量相当,但最终产物的纯度相对较高。因此,我们的结果可应用于在细菌中高效生产重组 HRP 变体和其他难以表达的蛋白质,而无需复杂的下游处理。

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