Department of Chemistry, The Hong Kong Baptist University, Waterloo Road, Kowloon Tong, Kowloon, Hong Kong, China.
J Phys Chem B. 2010 Apr 22;114(15):5154-60. doi: 10.1021/jp911156g.
Phosphodiesterases (PDEs) catalyze the hydrolysis of second messengers cAMP and cGMP in regulating many important cellular signals and have been recognized as important drug targets. Experimentally, a range of specificity/selectivity toward cAMP and cGMP is well-known for the individual PDE families. The study reported here reveals that PDEs might also exhibit selectivity toward conformations of the endogenous substrates cAMP and cGMP. Molecular dynamics simulations and free energy study have been applied to study the binding of the cAMP torsional conformers about the glycosyl bond in PDE10A2. The computational results elucidated that PDE10A2 is energetically more favorable in complex with the syn cAMP conformer (as reported in the crystal structure) and the binding of anti cAMP to PDE10A2 would lead to either a nonreactive configuration or significant perturbation on the catalytic pocket of the enzyme. This experimentally inaccessible information provides important molecular insights for the development of effective PDE10 ligands.
磷酸二酯酶(PDEs)通过催化第二信使 cAMP 和 cGMP 的水解来调节许多重要的细胞信号转导,它们已被认为是重要的药物靶点。在实验中,各个 PDE 家族对 cAMP 和 cGMP 具有广泛的特异性/选择性。本研究报告揭示了 PDE 可能也对内源性底物 cAMP 和 cGMP 的构象具有选择性。本文采用分子动力学模拟和自由能研究方法研究了 PDE10A2 中糖苷键处 cAMP 扭转构象的结合情况。计算结果表明,PDE10A2 与 syn cAMP 构象(如晶体结构中报道的)的复合物在能量上更有利,而 anti cAMP 与 PDE10A2 的结合将导致非反应性构象或对酶的催化口袋产生显著干扰。这种实验无法获得的信息为开发有效的 PDE10 配体提供了重要的分子见解。