Tarumoto Sena, Inoue Sei, Yanagimoto Rina, Saitoh Takashi
Faculty of Pharmaceutical Sciences, Hokkaido University of Science, Sapporo, Hokkaido 006-8585, Japan.
Biophys Physicobiol. 2024 Sep 18;21(3):e210019. doi: 10.2142/biophysico.bppb-v21.0019. eCollection 2024.
Biolayer interferometry (BLI) is an optical sensor-based analytical method primarily used for analyzing interactions between biomolecules. In this study, we explored the application of BLI to observe the cleavage reaction of glutathione S-transferase (GST)-tagged fusion protein by human rhinovirus (HRV) 3C protease on a BLI sensor as a new application of the BLI method. The soluble domain of the Tic22 protein from was expressed and purified as a GST-tagged fusion protein, GST-Tic22, in . A cleavage sequence for HRV 3C protease was inserted between the GST tag and the soluble domain of Tic22. First, we confirmed that GST-Tic22 was specifically cleaved at the inserted sequence by HRV 3C protease using sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Following this, GST-Tic22 was immobilized on a BLI sensor, and enzymatic cleavage by the HRV 3C protease was monitored. We observed that the soluble domain of Tic22 was cleaved and released into the buffer over time, and this reaction was dependent on the enzyme concentration. This result demonstrates that the BLI method can be used to evaluate the cleavage of the GST tag by the HRV 3C protease in real time under different conditions. This method enables a more efficient search for the optimal conditions for the tag cleavage reaction in fusion proteins, a process that has historically required a substantial amount of time and effort.
生物层干涉术(BLI)是一种基于光学传感器的分析方法,主要用于分析生物分子之间的相互作用。在本研究中,我们探索了BLI的应用,以观察人鼻病毒(HRV)3C蛋白酶在BLI传感器上对谷胱甘肽S-转移酶(GST)标记的融合蛋白的切割反应,这是BLI方法的一种新应用。来自[具体来源]的Tic22蛋白的可溶性结构域在[具体宿主]中作为GST标记的融合蛋白GST-Tic22进行表达和纯化。在GST标签和Tic22的可溶性结构域之间插入了HRV 3C蛋白酶的切割序列。首先,我们使用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳证实GST-Tic被HRV 3C蛋白酶在插入序列处特异性切割。在此之后,将GST-Tic22固定在BLI传感器上,并监测HRV 3C蛋白酶的酶促切割。我们观察到Tic22的可溶性结构域随着时间的推移被切割并释放到缓冲液中,并且该反应取决于酶浓度。该结果表明,BLI方法可用于实时评估HRV 3C蛋白酶在不同条件下对GST标签的切割。该方法能够更有效地寻找融合蛋白中标签切割反应的最佳条件,而这一过程在历史上需要大量的时间和精力。