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High affinity CXCR4 inhibitors generated by linking low affinity peptides

机译:通过连接低亲和力肽产生的高亲和力CXCR4抑制剂

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G-protein coupled receptors (GPCRs) are implicated in many diseases and attractive targets for drug discovery. Peptide fragments derived from protein ligands of GPCRs are commonly used as probes of GPCR function and as leads for drug development. However, these peptide fragments lack the structural integrity of their parent full-length protein ligands and often show low receptor affinity, which limits their research and therapeutic values. It remains a challenge to efficiently generate high affinity peptide inhibitors of GPCRs. We have investigated a combinational approach involving the synthetic covalent linkage of two low affinity peptide fragments to determine if the strategy can yield high affinity GPCR inhibitors. We examined this design approach using the chemokine receptor CXCR4 as a model of GPCR system. Here, we provide a proof of concept demonstration by designing and synthesizing two peptides, AR5 and AR6, that combine a peptide fragment derived from two viral ligands of CXCR4, vMlP-11 and HIV1 envelope glycoprotein gp120. AR5 and AR6 display nanomolar binding affinity, in contrast to the weak micromolar CXCR4 binding of each peptide fragment alone, and inhibit HIV-1 entry via CXCR4. Further studies were carried out for the representative peptide AR6 using western blotting and site-directed mutagenesis in conjunction with molecular dynamic simulation and binding free energy calculation to determine how the peptide interacts with CXCR4 and inhibits its downstream signaling. These results demonstrate that this combinational approach is effective for generating nanomolar active inhibitors of CXCR4 and may be applicable to other GPCR5. (C) 2019 Published by Elsevier Masson SAS.
机译:G-蛋白偶联受体(GPCR)涉及许多疾病和吸引药物发现的有吸引力的目标。衍生自GPCR的蛋白质配体的肽片段通常用作GPCR功能的探针,并作为药物发育的引线。然而,这些肽片段缺乏母体全长蛋白配体的结构完整性,并且通常显示出低受体亲和力,这限制了它们的研究和治疗价值。有效地产生GPCR的高亲和力肽抑制剂仍然是挑战。我们研究了一种组合方法,涉及两种低亲和力肽片段的合成共价连接,以确定策略是否可以产生高亲和力GPCR抑制剂。我们使用趋化因子受体CXCR4作为GPCR系统模型来检查这种设计方法。在这里,我们通过设计和合成两种肽,AR5和AR6来提供概念演示的证据,该肽AR5和AR6结合来自CXCR4,VMLP-11和HIV1包络糖蛋白GP120的两种病毒配体的肽片段。 AR5和AR6显示Nanomolar结合亲和力,与单独的每种肽片段的弱微摩尔CXCR4结合相反,并通过CXCR4抑制HIV-1进入。使用蛋白质印迹和定点诱变结合分子动态模拟和结合自由能计算来对代表性肽AR6进行进一步的研究,以确定肽如何与CXCR4相互作用并抑制其下游信号传导。这些结果表明,这种组合方法对于产生CXCR4的纳米摩尔活性抑制剂是有效的,并且可以适用于其他GPCR5。 (c)2019年由Elsevier Masson SA发布。

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