Yang J, Liu C Q
Laboratory of Cellular and Molecular Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming 650223, China.
Acta Pharmacol Sin. 2000 Jan;21(1):29-34.
To investigate the interaction between human CCR5 receptors (CCR5) and HIV-1 envelope glycoprotein gp120 (HIV-1 gp120) and HIV-1 receptor CD4 antigens (CD4).
The structurally conserved regions (SCR) of human CCR5 was built by the SYBYL/Biopolymer module using the corresponding transmembrane (TM) domain of bacteriorhodopsin (bR) as the template. The coordinates for amino-terminal residue sequence, and carboxyl-terminal residue sequence, extracellular and cytoplasmic loops were generated using LOOP SEARCH algorithm. Subsequently the structural model was merged into the complex with HIV-1 gp120 and CD4.
Human CCR5 interacted with both an HIV-1 gp120 and CD4. The N-terminal residues (especially Met1 and Gln4) of human CCR5 contacted with CD4 residues, mainly with one span (56-59) of CD4 in electrostatic interaction and hydrogen-bonds. The binding sites of human CCR5 were buried in a hydrophobic center surrounded by a highly basic periphery. On the other hand, direct interatomic contacts were made between 7 CCR5 residues and 6 gp120 amino-acid residues, which included van der Waals contacts, hydrophobic interaction, and hydrogen bonds.
The interaction model should be helpful for rational design of novel anti-HIV drugs.
研究人类CCR5受体(CCR5)与HIV-1包膜糖蛋白gp120(HIV-1 gp120)以及HIV-1受体CD4抗原(CD4)之间的相互作用。
利用视紫红质(bR)相应的跨膜(TM)结构域作为模板,通过SYBYL/生物聚合物模块构建人类CCR5的结构保守区域(SCR)。使用环搜索算法生成氨基末端残基序列、羧基末端残基序列、细胞外环和细胞质环的坐标。随后将结构模型与HIV-1 gp120和CD4合并为复合物。
人类CCR5与HIV-1 gp120和CD4均相互作用。人类CCR5的N末端残基(尤其是Met1和Gln4)与CD4残基接触,主要通过静电相互作用和氢键与CD4的一个片段(56-59)接触。人类CCR5的结合位点埋在由高度碱性外围包围的疏水中心内。另一方面,CCR5的7个残基与gp120的6个氨基酸残基之间形成了直接的原子间接触,包括范德华接触、疏水相互作用和氢键。
该相互作用模型应有助于新型抗HIV药物的合理设计。