在应用生物技术和微生物学中缓解体外蛋白溶解度低的策略

Aiya Chantarasiri, V. Meevootisom, S. Wiyakrutta
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引用次数: 1

摘要

从研究到应用,高蛋白质溶解度通常是一个理想的性质,但有时难以实现。完全折叠蛋白的体外低溶解度与应用微生物学研究、生化研究、生物制药研究、高分辨率结构研究以及需要高蛋白质浓度的应用有关。蛋白质溶解度的不足很大程度上取决于蛋白质分子的表面性质。为了解决这一问题,研究人员采用了化学添加剂、与溶解度增强标签融合以及表面氨基酸残基的分子工程等方法来提高水结合能力或防止蛋白质聚集。随着目标蛋白三维结构的可用性,可以系统地研究不同表面氨基酸残基对蛋白质溶解度的影响。利用先进的生物信息学工具,在蛋白质三维结构的指导下,可以设计和执行提高溶解度的诱变,成功率很高。将合理的分子工程与其他可行的方法相结合将是未来缓解重要蛋白质体外低溶解度的有效策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies for Alleviating in vitro Low Protein Solubility in Applied Biotechnology and Microbiology
From research to application, high protein solubility is usually a desired property yet sometimes difficult to achieve. The in vitro low solubility of the fully folded proteins is relevant to applied microbiological studies, biochemical studies, biopharmaceutical studies, high-resolution structural studies, and applications demanding high protein concentration. This insufficient protein solubility depends largely on the surface property of the protein molecule. To alleviate this problem, approaches emphasized on the improvement of water-binding ability or prevention of protein aggregation were employed including the use of chemical additives, fusion with solubility enhancement tags, and molecular engineering of the surface amino acid residues. With the availability of the three-dimensional structure of the target proteins, the effect of different surface amino acid residues on protein solubility could be systematically investigated. With the applications of advanced bioinformatics tools and guided by protein three-dimensional structure, solubility-improving mutagenesis can be designed and executed with a high chance of success. Integrating rational molecular engineering with other available approaches will be the effective strategy for alleviating in vitro low solubility of important proteins in the future.
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