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HIV-1蛋白酶的构象动力学:基于多种琥珀色力场的比较分子动力学模拟研究

Conformational dynamics of HIV-1 protease: a comparative molecular dynamics simulation study with multiple amber force fields.

作者信息

Meher Biswa Ranjan, Kumar Mattaparthi Venkata Satish, Sharma Smriti, Bandyopadhyay Pradipta

机构信息

Computational Biology Research Laboratory, Department of Biotechnology, Indian Institute of Technology, Guwahati, Assam 781039, India.

出版信息

J Bioinform Comput Biol. 2012 Dec;10(6):1250018. doi: 10.1142/S0219720012500187. Epub 2012 Jul 31.

Abstract

Flap dynamics of HIV-1 protease (HIV-pr) controls the entry of inhibitors and substrates to the active site. Dynamical models from previous simulations are not all consistent with each other and not all are supported by the NMR results. In the present work, the effect of force field on the dynamics of HIV-pr is investigated by MD simulations using three AMBER force fields ff99, ff99SB, and ff03. The generalized order parameters for amide backbone are calculated from the three force fields and compared with the NMR S2 values. We found that the ff99SB and ff03 force field calculated order parameters agree reasonably well with the NMR S2 values, whereas ff99 calculated values deviate most from the NMR order parameters. Stereochemical geometry of protein models from each force field also agrees well with the remarks from NMR S2 values. However, between ff99SB and ff03, there are several differences, most notably in the loop regions. It is found that these loops are, in general, more flexible in the ff03 force field. This results in a larger active site cavity in the simulation with the ff03 force field. The effect of this difference in computer-aided drug design against flexible receptors is discussed.

摘要

HIV-1蛋白酶(HIV-pr)的构象动力学控制着抑制剂和底物进入活性位点。先前模拟得到的动力学模型并非都相互一致,也并非都得到核磁共振结果的支持。在本研究中,使用三种AMBER力场ff99、ff99SB和ff03,通过分子动力学模拟研究了力场对HIV-pr动力学的影响。从这三种力场计算出酰胺主链的广义序参数,并与核磁共振S2值进行比较。我们发现,ff99SB和ff03力场计算出的序参数与核磁共振S2值相当吻合,而ff99计算出的值与核磁共振序参数偏差最大。每个力场的蛋白质模型的立体化学几何结构也与核磁共振S2值的结果吻合良好。然而,在ff99SB和ff03之间存在一些差异,最明显的是在环区。研究发现,这些环区在ff03力场中通常更具柔性。这导致在使用ff03力场的模拟中活性位点腔更大。讨论了这种差异在针对柔性受体的计算机辅助药物设计中的作用。

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