Yano Jason K, Poulos Thomas L
The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Curr Opin Biotechnol. 2003 Aug;14(4):360-5. doi: 10.1016/s0958-1669(03)00075-2.
Recent large-scale studies illustrate the importance of electrostatic interactions near the surface of proteins as a major factor in enhancing thermal stability. Mutagenesis studies have also demonstrated the importance of optimized charge interactions on the surface of the protein, which can significantly augment enzyme thermal stability. Directed evolution studies show that increased stability may be obtained by different routes, which may not mimic those used by nature. Despite observations that some of the most thermotolerant organisms grow under conditions of high pressure, little effort has been made to understand the correlation between pressure and temperature stability. One recent study demonstrates that the active-site volume may be important in increasing pressure stability.
最近的大规模研究表明,蛋白质表面附近的静电相互作用作为增强热稳定性的主要因素具有重要意义。诱变研究也证明了蛋白质表面优化电荷相互作用的重要性,这可以显著提高酶的热稳定性。定向进化研究表明,可以通过不同途径获得更高的稳定性,这些途径可能并不模仿自然界所采用的方式。尽管观察到一些最耐热的生物在高压条件下生长,但在理解压力与温度稳定性之间的相关性方面所做的工作很少。最近的一项研究表明,活性位点体积在提高压力稳定性方面可能很重要。