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CXCR4 chemokine receptor antagonists: nickel(ii) complexes of configurationally restricted macrocycles

机译:CXCR4趋化因子受体拮抗剂:构型受限大环化合物的镍(ii)配合物

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摘要

Tetraazamacrocyclic complexes of transition metals provide useful units for incorporating multiple coordination interactions into a single protein binding molecule. They can be designed with available sites for protein interactions via donor atom-containing amino acid side chains or labile ligands, such as H(2)O, allowing facile exchange. Three configurationally restricted nickel(ii) cyclam complexes with either one or two macrocyclic rings were synthesised and their ability to abrogate the CXCR4 chemokine receptor signalling process was assessed (IC(50) = 8320, 194 and 14 nM). Analogues were characterised crystallographically to determine the geometric parameters of the acetate binding as a model for aspartate. The most active nickel(ii) compound was tested in several anti-HIV assays against representative viral strains showing highly potent EC(50) values down to 13 nM against CXCR4 using viruses, with no observed cytotoxicity (CC(50) > 125 μM).
机译:过渡金属的四氮杂大环配合物为将多个配位相互作用结合到单个蛋白质结合分子中提供了有用的单元。它们可以设计成具有可用位点,用于通过含供体原子的氨基酸侧链或不稳定的配体(例如H(2)O)进行蛋白质相互作用,从而实现便捷的交换。合成了三个具有一个或两个大环的结构受限的镍(ii)环蛋白复合物,并评估了它们消除CXCR4趋化因子受体信号传导过程的能力(IC(50)= 8320、194和14 nM)。通过晶体学表征类似物,以确定作为天冬氨酸的模型的乙酸酯结合的几何参数。活性最强的镍(ii)化合物在几种抗HIV检测中针对代表性病毒株进行了测试,显示使用病毒对CXCR4的有效EC(50)值低至13 nM,未观察到细胞毒性(CC(50)> 125μM) 。

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