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研究CXCR4受体变构激动剂和拮抗剂的结合相互作用。

Studying the binding interactions of allosteric agonists and antagonists of the CXCR4 receptor.

作者信息

Planesas Jesús M, Pérez-Nueno Violeta I, Borrell José I, Teixidó Jordi

机构信息

Grup d'Enginyeria Molecular, Institut Químic de Sarriá (IQS), Universitat Ramon Llull, Barcelona, Spain.

Grup d'Enginyeria Molecular, Institut Químic de Sarriá (IQS), Universitat Ramon Llull, Barcelona, Spain; Harmonic Pharma, Espace Transfert, 615 rue du Jardin Botanique, 54600 Villers lès Nancy, France.

出版信息

J Mol Graph Model. 2015 Jul;60:1-14. doi: 10.1016/j.jmgm.2015.05.004. Epub 2015 May 30.

Abstract

Several examples of allosteric modulators of GPCRs have been reported recently in the literature, but understanding their molecular mechanism presents a new challenge for medicinal chemistry. For the specific case of the cellular receptor CXCR4, it is known that pepducins (lipidated fragments of intracellular GPCR loops) such as ATI-2341 modulate CXCR4 activity agonistically via an allosteric mechanism. Moreover, there are also examples of small organic molecules such as AMD11070 and GSK812397 which may also act as allosteric antagonists. However, incomplete knowledge of the ligand-binding sites has hampered a detailed molecular understanding of how these inhibitors work. Here, we attempt to answer this question by analysing the binding interactions between the CXCR4 receptor and the above-mentioned allosteric modulators. We propose two different allosteric binding sites, one located in the intracellular loops 1, 2 and 3 (ICL1, ICL2 and ICL3) which binds the pepducin agonist ATI-2341, and the other at a subsite of the main extracellular orthosteric binding pocket between extracellular loops 1 and 2 and the N-terminus, which binds the antagonists AMD11070 and GSK812397. Allosteric interactions between the CXCR4 and ATI-2341 were predicted by combining different modeling approaches. First, a rotational blind docking search was applied and the best poses were subsequently refined using flexible docking methods and molecular dynamic simulations. For the AMD11070 and GSK812397 antagonists, the entire CXCR4 protein surface was explored by blind docking in order to define the binding region. A second docking analysis by subsites was then performed to refine the allosteric interactions. Finally, we identified the binding residues that appear to be essential for CXCR4 allosteric modulators.

摘要

最近文献中报道了几种G蛋白偶联受体(GPCR)变构调节剂的例子,但了解它们的分子机制对药物化学来说是一个新的挑战。对于细胞受体CXCR4的具体情况,已知肽导向素(细胞内GPCR环的脂化片段),如ATI-2341,通过变构机制激动性地调节CXCR4活性。此外,还有一些小分子有机化合物的例子,如AMD11070和GSK812397,它们也可能作为变构拮抗剂。然而,对配体结合位点的不完全了解阻碍了对这些抑制剂作用方式的详细分子理解。在这里,我们试图通过分析CXCR4受体与上述变构调节剂之间的结合相互作用来回答这个问题。我们提出了两个不同的变构结合位点,一个位于细胞内环1、环2和环3(ICL1、ICL2和ICL3)中,与肽导向素激动剂ATI-2341结合,另一个位于细胞外环1和环2与N端之间主要细胞外正构结合口袋的一个亚位点,与拮抗剂AMD11070和GSK812397结合。通过结合不同的建模方法预测了CXCR4与ATI-2341之间的变构相互作用。首先,应用旋转盲对接搜索,随后使用柔性对接方法和分子动力学模拟对最佳构象进行优化。对于AMD11070和GSK812397拮抗剂,通过盲对接探索了整个CXCR4蛋白表面以确定结合区域。然后通过亚位点进行第二次对接分析以优化变构相互作用。最后,我们确定了对于CXCR4变构调节剂似乎至关重要的结合残基。

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