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Computational studies of the interaction between the HIV-1 integrase tetramer and the cofactor LEDGF/p75: Insights from molecular dynamics simulations and the Informational spectrum method

机译:HIV-1整合酶四聚体与Cofactor LEDGF / P75之间相互作用的计算研究:分子动力学模拟的见解及信息谱法

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摘要

A crystal structure of the integrase binding domain (IBD) of the lens epithelium-derived growth factor (LEDGF/p75) in complex with the dimer of the HIV-1 integrase (IN) catalytic core domain (CCD) provides useful information that might help in the understanding of essential protein-protein contacts in HIV-1. However, mutagenic studies indicated that interactions between the full-length proteins were more extensive than the contacts observed in the co-crystal structure of the isolated domains. On the other hand, the biochemical characterization of the interaction between full-length IN and LEDGF/p75 has recently proved that LEDGF/p75 promotes IN tetramerization with two LEDGF/p75 IBD molecules bound to the IN tetramer. This experimental evidence suggests that to obtain a complete structural description of the interactions between the two proteins, the full-length tetrameric structure of IN should be considered. Our aim was to obtain a detailed picture of HIV-1 IN interactions with cellular co-factors that was of general interest, particularly for the development of small molecule IN inhibitors, which mimic the IBD of LEDGF/p75. To this end, we performed bioinformatics analyses to identify protein sequence domains involved in long-range recognition. Subsequently, we applied molecular dynamics techniques to investigate the detailed interactions between the complete tetrameric form of IN and two molecules of the IBD of LEDGF/p75. Our dynamic picture is in agreement with experimental data and, thereby, provides new details of the IN-LEDGF/p75 interaction.
机译:与HIV-1整合酶(IN)催化核结构域(CCD)的二聚体复合物的透镜上皮衍生的生长因子(LEDGF / P75)的整合酶结合结构域(IBD)的晶体结构提供了可能有帮助的有用信息在理解HIV-1中的必需蛋白质 - 蛋白质接触。然而,诱变研究表明,全长蛋白质之间的相互作用比在隔离结构域的共晶结构中观察到的触点更广泛。另一方面,全长和LEDGF / P75之间的相互作用的生物化学表征最近证明了LEDGF / P75促进了与在四聚体中结合的两种LEDGF / P75 IBD分子的四聚化。该实验证据表明,为了获得两种蛋白质之间的相互作用的完全结构描述,应考虑全长四聚体结构。我们的目的是在与一般兴趣的细胞共同因子中获得HIV-1的详细情况,特别是对于抑制剂中的小分子的发育,其模仿LEDGF / P75的IBD。为此,我们进行了生物信息学分析以鉴定远程识别中涉及的蛋白质序列域。随后,我们应用分子动力学技术以研究LEDGF / P75的IBD中的完全四聚体形式和两个分子之间的详细相互作用。我们的动态图片与实验数据一致,从而提供了LEDGF / P75交互的新细节。

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