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通过添加带电荷的寡肽来提高最小荧光素酶的生物发光:picALuc2.0。

Improving bioluminescence of a minimal luciferase by adding a charged oligopeptide: picALuc2.0.

机构信息

Technology Research Laboratory, Shimadzu Corporation, Kyoto, Japan.

School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Biotechnol J. 2023 Jun;18(6):e2200560. doi: 10.1002/biot.202200560. Epub 2023 Mar 27.

Abstract

Luciferases are widely used as reporter proteins in diverse fields from basic biology to medical and environmental researches. Development of luciferase applications for reporter proteins requires small size without target inhibition, appropriate genomic insertion for high expression level, and bright emission for detection sensitivity. We previously developed the minimal luciferase picALuc, but its luminescence was still dim compared to other bright luciferases in terms of expression in Escherichia coli. In this study, diverse additions of oligopeptides with charged residues (eight amino acids in total) to the C-terminus of picALuc enhanced luminescence by up to approximately 50-fold, that is, enhanced enzymatic activity. Moreover, these high luminescence activities were achieved in bacterial and mammalian expression, suggesting their further applicability in many expression systems. The finding in this study that the simple addition of oligopeptides with charged residues (or charge engineering of this kind) enhances enzymatic activity may be applied to a wide variety of enzymatic reactions and protein functions.

摘要

荧光素酶被广泛用作报告蛋白,应用于从基础生物学到医学和环境研究等多个领域。开发用于报告蛋白的荧光素酶应用需要具有以下特点:体积小、不抑制靶标、合适的基因组插入以实现高表达水平、以及明亮的发射以提高检测灵敏度。我们之前开发了最小的荧光素酶 picALuc,但与其他在大肠杆菌中表达的明亮荧光素酶相比,其发光仍然较暗。在这项研究中,在 picALuc 的 C 末端添加带有电荷的短肽(总共八个氨基酸)可以将发光强度提高约 50 倍,即增强酶活性。此外,这些高发光活性在细菌和哺乳动物表达中都能实现,表明它们在许多表达系统中具有进一步的适用性。本研究发现,简单地添加带有电荷的短肽(或这种电荷工程)可以增强酶活性,这一发现可能适用于各种酶反应和蛋白质功能。

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