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通过微创、直接、共价和定点固定化来增强蛋白质稳定性。

Enhanced protein stability through minimally invasive, direct, covalent, and site-specific immobilization.

机构信息

Dept. of Chemical Engineering, Brigham Young University, Provo, UT, USA.

出版信息

Biotechnol Prog. 2013 Jan-Feb;29(1):247-54. doi: 10.1002/btpr.1671. Epub 2013 Jan 17.

Abstract

Bioconjugating protein to nonbiological surfaces is an essential component of many promising biotechnologies impacting diverse applications such as medical diagnostics, biocatalysis, biohazard detection, and proteomics. However, to enable the widespread economical use of immobilized-protein technologies, long-term stability, and reusability is essential. To enhance protein stability in harsh conditions, herein we report a minimally invasive and covalent bioconjugation that enables precise control of the immobilization location at potentially any surface-accessible location where the incorporated unnatural amino acid does not impact protein structure and function. Specifically, the PRECISE system is introduced where a uniquely reactive unnatural amino acid was incorporated site-specifically at a prespecified location in GFP using cell-free protein synthesis. The GFP was then directly and covalently attached to superparamagnetic beads by the unnatural amino acid in a single click reaction. The immobilized GFP was probed for retained activity and stability under harsh conditions including freeze-thaw cycling and incubation in urea at elevated temperatures. The immobilized GFP was more stable compared to unattached protein in all cases and for all durations observed. The enhanced stability of the immobilized protein is a promising step towards long-term protein stability for biocatalysis and other immobilized-protein applications.

摘要

将蛋白质偶联到非生物表面是许多有前途的生物技术的重要组成部分,这些技术影响着各种应用,如医学诊断、生物催化、生物危害检测和蛋白质组学。然而,为了实现固定化蛋白技术的广泛经济应用,长期稳定性和可重复使用性是至关重要的。为了提高蛋白质在恶劣条件下的稳定性,本文报告了一种微创和共价偶联方法,能够精确控制固定化位置,在潜在的任何表面可及的位置上进行固定化,而不影响蛋白质的结构和功能。具体来说,引入了 PRECISE 系统,其中在 GFP 中使用无细胞蛋白质合成在预定位置特异性地掺入独特反应性的非天然氨基酸。然后,通过非天然氨基酸的点击反应将 GFP 直接共价连接到超顺磁性珠上。通过非天然氨基酸固定化 GFP ,在恶劣条件下(包括冻融循环和在高温下脲孵育)下检测其保留的活性和稳定性。与未附着的蛋白质相比,所有情况下和所有观察到的时间段内,固定化 GFP 都更稳定。固定化蛋白质稳定性的提高是生物催化和其他固定化蛋白质应用中实现长期蛋白质稳定性的一个有希望的步骤。

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