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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Putative cholesterol-binding sites in human immunodeficiency virus (HIV) coreceptors CXCR4 and CCR5
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Putative cholesterol-binding sites in human immunodeficiency virus (HIV) coreceptors CXCR4 and CCR5

机译:人类免疫缺陷病毒(HIV)共受体CXCR4和CCR5中的假定胆固醇结合位点

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Using molecular docking, we identified a cholesterol-binding site in the groove between transmembrane helices 1 and 7 near the inner membrane-water interface of the G protein-coupled receptor CXCR4, a coreceptor for HIV entry into cells. In this docking pose, the amino group of lysine K67 establishes a hydrogen bond with the hydroxyl group of cholesterol, whereas tyrosine Y302 stacks with cholesterol by its aromatic side chain, and a number of residues form hydrophobic contacts with cholesterol. Sequence alignment showed that a similar putative cholesterol-binding site is also present in CCR5, another HIV coreceptor. We suggest that the interaction of cholesterol with these putative cholesterol-binding sites in CXCR4 and CCR5 is responsible for the presence of these receptors in lipid rafts, for the effect of cholesterol on their conformational stability and function, and for the role that cell cholesterol plays in the cell entry of HIV strains that use these membrane proteins as coreceptors. We propose that mutations of residues that are involved in cholesterol binding will make CXCR4 and CCR5 insensitive to membrane cholesterol content. Cholesterol-binding sites in HIV coreceptors are potential targets for steroid drugs that bind to CXCR4 and CCR5 with higher binding affinity than cholesterol, but do not stabilize the native conformation of these proteins.
机译:使用分子对接,我们确定了跨膜螺旋1和7之间的沟渠附近的G蛋白偶联受体CXCR4(HIV进入细胞的核心受体)的内膜-水界面附近的胆固醇结合位点。在这种对接姿势中,赖氨酸K67的氨基与胆固醇的羟基建立氢键,而酪氨酸Y302通过其芳香族侧链与胆固醇堆积,许多残基与胆固醇形成疏水性接触。序列比对表明,另一个HIV核心受体CCR5中也存在类似的假定胆固醇结合位点。我们建议胆固醇与CXCR4和CCR5中这些假定的胆固醇结合位点之间的相互作用负责脂质筏中这些受体的存在,胆固醇对其构象稳定性和功能的影响以及细胞胆固醇所起的作用使用这些膜蛋白作为共受体的HIV菌株进入细胞的过程。我们提出,参与胆固醇结合的残基突变会使CXCR4和CCR5对膜胆固醇含量不敏感。 HIV共受体中的胆固醇结合位点是类固醇药物的潜在靶点,这些类固醇药物以比胆固醇更高的结合亲和力与CXCR4和CCR5结合,但不能稳定这些蛋白质的天然构象。

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