蛋白质工程
突变
定向进化
定向分子进化
蛋白质功能
蛋白质稳定性
计算生物学
功能(生物学)
蛋白质设计
序列空间
蛋白质测序
生物
选择(遗传算法)
序列(生物学)
生化工程
生物化学
蛋白质结构
计算机科学
肽序列
遗传学
突变
酶
工程类
基因
突变体
数学
人工智能
纯数学
巴拿赫空间
标识
DOI:10.1016/0958-1669(93)90011-k
摘要
The ability to use proteins in unusual or non-natural environments greatly expands their potential applications in biotechnology. Because natural selection has neither maximized the stability of proteins nor optimized them to function under unusual conditions, there is considerable room for their improvement by protein engineering. Significant advances reported within the past year include a dramatic demonstration of a protein's ability to tolerate changes in its amino acid sequence, large increases in protein stability, and the use of random mutagenesis to obtain novel enzymatic properties. Approaches using random or site-directed mutagenesis have been successful in generating proteins able to function in an extended range of environments.
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