Koval'skiĭ D B, Kanibolotskiĭ D S, Dubina V N, Korneliuk A I
Institute of Molecular Biology and Genetics, NAS of Ukraine, Kyiv.
Ukr Biokhim Zh (1999). 2002 Nov-Dec;74(6):135-8.
At weak acidic pH, where HIV-1 proteinase is most stable and active, its catalytic Asp 25/25' dyad shares one proton. At a physiological pH the dyad is deprotonated, however, 2 ns molecular dynamics simulations of the HIV-1 protease with monoprotonated and deprotonated Asp25/25' dyad is performed, in order to investigate the influence of Asp25/25' protonation state on the proteinase dynamics. For net charge neutralization the 4 Cl- ions were included. In case of deprotonated active site the significant tertiary structure deviation of HIV-1 PR structure from crystal structure is observed, while in the monoprotonated one the tertiary structure fluctuates near starting structure. Possible mechanism of the influence of the Asp25/25' protonation state on proteinase dynamics is discussed.
在弱酸性pH值下,HIV-1蛋白酶最为稳定且具有活性,其催化性天冬氨酸25/25' 二元组共享一个质子。然而,在生理pH值下该二元组会发生去质子化,因此进行了对具有单质子化和去质子化天冬氨酸25/25' 二元组的HIV-1蛋白酶的2纳秒分子动力学模拟,以研究天冬氨酸25/25' 质子化状态对蛋白酶动力学的影响。为实现净电荷中和,加入了4个氯离子。在去质子化活性位点的情况下,观察到HIV-1蛋白酶结构与晶体结构存在显著的三级结构偏差,而在单质子化的情况下,三级结构在起始结构附近波动。文中讨论了天冬氨酸25/25' 质子化状态对蛋白酶动力学影响的可能机制。