De Luca Laura, Vistoli Giulio, Pedretti Alessandro, Barreca Maria Letizia, Chimirri Alba
Dipartimento Farmaco-Chimico, Università di Messina, Viale Annunziata, Italy.
Biochem Biophys Res Commun. 2005 Nov 4;336(4):1010-6. doi: 10.1016/j.bbrc.2005.08.211.
We have carried out a molecular dynamics (MD) simulation of full-length HIV-1 integrase (IN) dimer complexed with viral DNA with the aim of gaining information about the enzyme motion and investigating the movement of the catalytic flexible loop (residues 140-149) thought to be essential in the catalytic mechanism of IN. During the simulation, we observed quite a different behavior of this region in the presence or absence of the viral DNA. In particular, the MD results underline the crucial role of the residue Tyr143 in the mechanism of integration of viral DNA into the host chromosome. The present findings confirm the experimental data (e.g., site-directed mutagenesis experiments) showing that the loop is involved in the integration reactions and its mobility is correlated with the catalytic activity of HIV-1 integrase.
我们对与病毒DNA复合的全长HIV-1整合酶(IN)二聚体进行了分子动力学(MD)模拟,目的是获取有关该酶运动的信息,并研究被认为在IN催化机制中至关重要的催化柔性环(残基140 - 149)的运动。在模拟过程中,我们观察到在存在或不存在病毒DNA的情况下,该区域表现出截然不同的行为。特别是,MD结果强调了残基Tyr143在病毒DNA整合到宿主染色体机制中的关键作用。目前的研究结果证实了实验数据(例如定点诱变实验),表明该环参与整合反应,并且其流动性与HIV-1整合酶的催化活性相关。