半胱氨酸
药物发现
小分子
变构调节
化学
化学基因学
残留物(化学)
半胱氨酸代谢
计算生物学
化学生物学
共价键
生物化学
组合化学
药物开发
药品
酶
生物
药理学
有机化学
作者
Kenneth K. Hallenbeck,David M. Turner,Adam R. Renslo,Michelle R. Arkin
标识
DOI:10.2174/1568026616666160719163839
摘要
The targeting of non-catalytic cysteine residues with small molecules is drawing increased attention from drug discovery scientists and chemical biologists. From a biological perspective, genomic and proteomic studies have revealed the presence of cysteine mutations in several oncogenic proteins, suggesting both a functional role for these residues and also a strategy for targeting them in an 'allele specific' manner. For the medicinal chemist, the structure-guided design of cysteine- reactive molecules is an appealing strategy to realize improved selectivity and pharmacodynamic properties in drug leads. Finally, for chemical biologists, the modification of cysteine residues provides a unique means to probe protein structure and allosteric regulation. Here, we review three applications of cysteinemodifying small molecules: 1) the optimization of existing drug leads, 2) the discovery of new lead compounds, and 3) the use of cysteine-reactive molecules as probes of protein dynamics. In each case, structure-guided design plays a key role in determining which cysteine residue(s) to target and in designing compounds with the proper geometry to enable both covalent interaction with the targeted cysteine and productive non-covalent interactions with nearby protein residues.
科研通智能强力驱动
Strongly Powered by AbleSci AI