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通过整合共价键和非共价相互作用定制标签/捕获系统以实现高效蛋白质自组装

Tailoring the Tag/Catcher System by Integrating Covalent Bonds and Noncovalent Interactions for Highly Efficient Protein Self-Assembly.

作者信息

Chen Yao, Ming Dengming, Zhu Liying, Huang He, Jiang Ling

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Food Science and Light Industry, Nanjing Tech University, Nanjing 211816, China.

College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing 211816, China.

出版信息

Biomacromolecules. 2022 Sep 12;23(9):3936-3947. doi: 10.1021/acs.biomac.2c00765. Epub 2022 Aug 23.

Abstract

Covalent bonds and noncovalent interactions play crucial roles in enzyme self-assembly. Here, we designed a Tag/Catcher system named NGTag/NGCatcher in which the Catcher is a highly charged protein that can bind proteins with positively charged tails and rapidly form a stable isopeptide bond with NGTag. In this study, we present a multienzyme strategy based on covalent bonds and noncovalent interactions. , mCherry, YFP, and GFP can form protein-rich three-dimensional networks based on NGCatcher, NGTag, and RK (Arginine/Lysine) tails, respectively. Furthermore, this technology was applied to improve lycopene production in . Three key enzymes were involved in lycopene production variants from R12 of NGCatcher_CrtE, NGTag_Idi, and RKIspARK, where the multienzyme complexes were clearly observed and , and the lycopene production was 17.8-fold higher than that in the control group. The NGTag/NGCatcher system will provide new opportunities for and multienzyme catalysis.

摘要

共价键和非共价相互作用在酶的自组装过程中起着关键作用。在此,我们设计了一种名为NGTag/NGCatcher的标签/捕获系统,其中捕获蛋白是一种带高电荷的蛋白质,它能够与带正电荷尾巴的蛋白质结合,并迅速与NGTag形成稳定的异肽键。在本研究中,我们提出了一种基于共价键和非共价相互作用的多酶策略。mCherry、YFP和GFP分别可以基于NGCatcher、NGTag和RK(精氨酸/赖氨酸)尾巴形成富含蛋白质的三维网络。此外,该技术被应用于提高番茄红素的产量。在番茄红素生产变体中,来自NGCatcher_CrtE的R12、NGTag_Idi和RKIspARK的三种关键酶参与其中,在那里可以清楚地观察到多酶复合物,并且番茄红素产量比对照组高17.8倍。NGTag/NGCatcher系统将为多酶催化和多酶组装提供新的机会。

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