Uzairu Sani Muhammad, Tijani Yahaya, Gadaka Madu Adamu, Modu Babagana, Watafua Miriam, Ahmad Hadiza Ali, Zakariya Umar Abdullahi, Ibrahim Aminu, Daja Aliyu, Zanna Hassan, Sallau Abdullahi Balarabe
Department of Biochemistry, University of Maiduguri, P.M.B. 1069 Maiduguri, Nigeria.
Department of Biochemistry, Federal University, Dutse, P. M. B. 7156 Dutse, Nigeria.
Heliyon. 2022 Sep 13;8(9):e10613. doi: 10.1016/j.heliyon.2022.e10613. eCollection 2022 Sep.
Butyrylcholinesterase (BChE) performs a significant function in Alzheimer's disease progression. Experimental studies have shown that the function of BChE in the attenuation of cholinergic neurotransmission is essentially altered in brains of advanced AD patients. Here, using the complimentary methods of enzyme kinetic studies, molecular modeling and protein-ligand interaction profiling, we sought to reveal the mechanistic and structural features of BChE-methyrosmarinate interactions. Molecular docking simulations revealed that methylrosmarinate dwelled well in the active centre of BChE, where it got involved in stabilizing non-covalent associations with myriad subsites. Enzyme kinetic experiments showed that the and values were 156.20 ± 3.11 U mg protein and 0.13 ± 0.01 μM, respectively. The inhibition studies showed that methylrosmarinate apparently inhibited BChE in a linear mixed manner, with an value of 10.31 μM and a value of 3.73 ± 1.52 μM. Taken together, the extremely reduced value and the increased number of BChE-methylrosmarinate interactions presuppose that methylrosmarinate is a good inhibitor of BChE, despite the fact that the mechanism for the effect of BChE inhibition on several pathological conditions remains unexplored.
丁酰胆碱酯酶(BChE)在阿尔茨海默病进展中发挥着重要作用。实验研究表明,在晚期AD患者的大脑中,BChE在减弱胆碱能神经传递方面的功能发生了本质改变。在此,我们运用酶动力学研究、分子建模和蛋白质-配体相互作用分析等互补方法,试图揭示BChE与迷迭香酸甲酯相互作用的机制和结构特征。分子对接模拟显示,迷迭香酸甲酯在BChE的活性中心中驻留良好,在那里它参与稳定与众多亚位点的非共价结合。酶动力学实验表明,Vmax和Km值分别为156.20±3.11 U mg蛋白和0.13±0.01μM。抑制研究表明,迷迭香酸甲酯以线性混合方式明显抑制BChE,Ki值为10.31μM,Kiu值为3.73±1.52μM。综上所述,尽管BChE抑制作用对几种病理状况的影响机制仍未得到探索,但迷迭香酸甲酯极低的Ki值以及BChE与迷迭香酸甲酯相互作用数量的增加预示着迷迭香酸甲酯是一种良好的BChE抑制剂。