Sun Ming, Liu Xiao-Hong, Ji San-Hao, Zhao Yu-Fen
The Key Laboratory of Phosphorous Chemistry and Chemical Biology of Ministry of Education, Department of Chemistry, Tsinghua University, Beijing 100084, China.
J Mol Graph Model. 2005 Apr;23(5):433-8. doi: 10.1016/j.jmgm.2004.12.003. Epub 2005 Jan 20.
Molecular dynamics simulations were performed on modeled kinase-substrate complexes in an attempt to establish a relationship between structural features and binding ability of the complexes. We found that the monitored distance between substrate nucleophilic oxygen (OG) and attacked phosphorus (PG) of ATP analog correlated closely with the binding affinity. With reference to 3.3 A, the van der Waals sum of oxygen and phosphorus, the calculated distances of good substrates were close to it whereas those of poor substrates were far apart from it. Therefore, it is reasonable to consider the OG-PG distance as a potential criterion to prefigure the kinase-substrate binding specificity and the simple computational techniques may work as an easy approach to distinguish good substrates from weak or poor substrates.
对模拟的激酶-底物复合物进行了分子动力学模拟,试图建立复合物的结构特征与结合能力之间的关系。我们发现,底物亲核氧(OG)与ATP类似物被攻击的磷(PG)之间监测到的距离与结合亲和力密切相关。参照氧和磷的范德华半径之和3.3 Å,良好底物的计算距离与之接近,而不良底物的计算距离则与之相差甚远。因此,将OG-PG距离视为预测激酶-底物结合特异性的潜在标准是合理的,并且简单的计算技术可能是区分良好底物与弱底物或不良底物的简便方法。