自动停靠
核糖核酸酶
对接(动物)
酶
生物化学
组氨酸
化学
配体(生物化学)
丙氨酸
活动站点
结合位点
残留物(化学)
立体化学
核糖核酸
基因
氨基酸
受体
生物信息学
护理部
医学
作者
Sayan Mukherjee,Soumya De,Zhumur Ghosh,Swagata Dasgupta
标识
DOI:10.1002/bmb.2005.49403305335
摘要
Abstract Enzymes with ribonucleolytic activity play a pivotal role in gene expression and cellular homeostasis by altering the levels of cellular RNA. Ribonuclease A has been the most well studied of such enzymes whose histidine residues (His 12 and His 119 ) play a crucial role in the catalytic mechanism of the protein. The ligands chosen for this study, 2′CMP and 3′CMP, act as competitive substrate analog inhibitors of this enzyme. Using molecular graphics software freely available for academic use, AutoDock and PyMol, we demonstrate that substitution of either histidine residue by alanine causes marked changes in the distances between these critical residues of the enzyme. The ligands in the docked conformation (particularly on mutation of His 119 to Ala) compensate for the altered free energy and hydrogen bonding abilities in these new protein‐ligand complexes.
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