Switzer Hannah J, Howard Christina A, Halonski John F, Peairs Emily M, Smith Nolan, Zamecnik Maddy P, Verma Sanjana, Young Douglas D
Department of Chemistry, William & Mary Williamsburg VA USA
RSC Adv. 2023 Mar 14;13(13):8496-8501. doi: 10.1039/d3ra00392b.
A carboxylesterase derived from P1 was immobilized onto an epoxy-activated Sepharose resin non-canonical amino acids. The immobilized enzyme exhibited heightened performance in organic solvents, recyclability, and stability at room temperature for over two years. The incorporation of a non-canonical amino acid afforded a high degree of control over the bioorthogonal immobilization reaction. These results indicate that the specificity conferred by genetic code expansion produces advantages in protein immobilization and broadens the utility of such proteins to non-biological settings.
一种源自P1的羧酸酯酶被固定在环氧活化的琼脂糖树脂上,使用了非标准氨基酸。固定化酶在有机溶剂中表现出更高的性能、可回收性以及在室温下超过两年的稳定性。非标准氨基酸的引入为生物正交固定化反应提供了高度的控制。这些结果表明,遗传密码扩展赋予的特异性在蛋白质固定化方面产生了优势,并拓宽了此类蛋白质在非生物环境中的应用范围。