King Fahd Medical Research Center, King Abdulaziz University, P.O. Box 80216, Jeddah 21589, Saudi Arabia.
CNS Neurol Disord Drug Targets. 2012 Mar;11(2):142-7. doi: 10.2174/187152712800269669.
This study describes molecular interactions between human brain acetylcholinesterase (AChE) and the well known anti-neoplastic drug, methotrexate (MTX) and its comparison to 'AChE-cyclophosphamide (CP) interactions' that we reported previously. Docking between MTX and AChE was performed using 'Autodock4.2'. Hydrophobic interactions and hydrogen bonds both play an equally important role in the correct positioning of MTX within the 'acyl pocket' as well as 'catalytic site' of AChE to permit docking. However, docking of CP to AChE is largely dominated by hydrophobic interactions. Such information may aid in the design of versatile AChE-inhibitors, and is expected to aid in safe clinical use of MTX. Scope still remains in the determination of the three-dimensional structure of AChE-MTX complex by X-ray crystallography to validate the described data. The current computational study supports our previous experimental study which concluded a mixed inhibition model for AChE-inhibition by MTX. Furthermore, the present report confirms that MTX is a more efficient inhibitor of human brain AChE compared to CP with reference to K(i) and ΔG values.
本研究描述了人脑中乙酰胆碱酯酶(AChE)与著名抗肿瘤药物甲氨蝶呤(MTX)之间的分子相互作用,并将其与我们之前报道的“AChE-环磷酰胺(CP)相互作用”进行了比较。使用“Autodock4.2”进行 MTX 与 AChE 之间的对接。疏水相互作用和氢键在 MTX 正确定位在 AChE 的“酰基口袋”和“催化部位”中以允许对接方面都起着同等重要的作用。然而,CP 与 AChE 的对接主要受疏水相互作用的控制。这些信息可能有助于设计多功能的 AChE 抑制剂,并有望有助于 MTX 的安全临床应用。通过 X 射线晶体学确定 AChE-MTX 复合物的三维结构以验证所描述的数据仍然是研究的范围。目前的计算研究支持我们之前的实验研究,该研究得出了 MTX 对 AChE 抑制的混合抑制模型的结论。此外,本报告还证实,与 CP 相比,MTX 是一种更有效的人脑 AChE 抑制剂,参考 K(i)和ΔG 值。