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首页> 外文期刊>Journal of Medicinal Chemistry >The role of membranes in the organization of HIV-1 Gag p6 and Vpr: p6 Shows high affinity for membrane bilayers which substantially increases the interaction between p6 and Vpr
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The role of membranes in the organization of HIV-1 Gag p6 and Vpr: p6 Shows high affinity for membrane bilayers which substantially increases the interaction between p6 and Vpr

机译:膜在HIV-1 Gag p6和Vpr组织中的作用:p6对膜双层具有很高的亲和力,从而大大增加了p6和Vpr之间的相互作用

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摘要

The molecular mechanism by which HIV-1 Gag proteins are targeted and transported to the plasma membrane after ribosomal synthesis is unknown. In this work, we investigated the potential interaction of p6 and Vpr with model membranes and have determined their binding constants. Plasmon waveguide resonance (PWR) experiments showed that p6 strongly interacts with membranes (K_d ~40 nM), which may help explaining in part why Gag is targeted to and assembles into membranes by coating itself with lipids. Moreover, a substantial increased affinity of Vpr for p6 was observed while in a membrane environment. In order to further investigate the molecular properties behind the high affinity to model membranes, molecular dynamics simulations were carried out for p6 with a dodecylphosphocholine (DPC) micelle. The results indicate an integration route model for Vpr into virions and may help explain why previous reports failed to detect p6 in virion core preparations.
机译:核糖体合成后,HIV-1 Gag蛋白靶向并转运至质膜的分子机制尚不清楚。在这项工作中,我们调查了p6和Vpr与模型膜的潜在相互作用,并确定了它们的结合常数。等离子波导共振(PWR)实验表明p6与膜强烈相互作用(K_d〜40 nM),这可能有助于部分解释Gag为何被脂质包被以靶向并组装到膜上。此外,在膜环境中观察到Vpr对p6的亲和力显着增加。为了进一步研究对模型膜的高亲和力背后的分子特性,使用十二烷基磷酸胆碱(DPC)胶束对p6进行了分子动力学模拟。结果表明了将Vpr整合到病毒颗粒中的整合途径模型,并可能有助于解释为什么以前的报道未能在病毒颗粒核心制剂中检测到p6。

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