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Evidence for Common Structural Determinants of Human Immunodeficiency Virus Type 1 Coreceptor Activity Provided through Functional Analysis of CCR5/CXCR4 Chimeric Coreceptors

机译:通过CCR5 / CXCR4嵌合共受体功能分析提供的人类免疫缺陷病毒1型共受体活性的常见结构决定因素的证据

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摘要

Human immunodeficiency virus type 1 (HIV-1) infection in vivo is dependent upon the interaction of the viral envelope glycoprotein gp120 with CC chemokine receptor 5 (CCR5) or CXC chemokine receptor 4 (CXCR4). To study the determinants of the gp120-coreceptor association, we generated a set of chimeric HIV-1 coreceptors which express all possible combinations of the four extracellular domains of CCR5 and CXCR4. Stable U87 astroglioma cell lines expressing CD4 and individual chimeric coreceptor proteins were tested against a variety of R5, X4, and R5X4 envelope glycoproteins and virus strains for their ability to support HIV-1-mediated cell fusion and infection, respectively. Each of the cell lines promoted fusion with cells expressing an HIV envelope glycoprotein, except for U87.CD4.5455, which presents the first extracellular loop (ECL1) and flanking sequences of CXCR4 in the context of CCR5. However, all of the chimeric coreceptors allowed productive infection by one or more of the viral strains tested. Viral phenotype was a predictive factor for the observed activity of the chimeric molecules; X4 and R5X4 HIV strains utilized a majority of the chimeras, while R5 strains were limited in their ability to infect cells expressing these chimeric molecules. The expression of CCR5 ECL2 within the CXCR4 backbone supported infection by an R5 primary isolate, but no chimeras bearing the N terminus of CCR5 exhibited activity with R5 strains. Remarkably, the introduction of any CXCR4 domain into the CCR5 backbone was sufficient to allow utilization by multiple X4 strains. However, critical determinants within ECL2 and/or ECL3 of CXCR4 were apparent for all X4 viruses upon replacement of these domains in CXCR4 with CCR5 sequences. Unexpectedly, chimeric coreceptor-facilitated entry was blocked in all cases by the presence of the CXCR4-specific inhibitor AMD3100. Our data provide proof that CCR5 contains elements that support usage by X4 viral strains and demonstrate that the gp120 interaction sites of CCR5 and CXCR4 are structurally related.
机译:人体感染1型人类免疫缺陷病毒(HIV-1)取决于病毒包膜糖蛋白gp120与CC趋化因子受体5(CCR5)或CXC趋化因子受体4(CXCR4)的相互作用。为了研究gp120-共受体关联的决定因素,我们生成了一组嵌合的HIV-1共受体,它们表达CCR5和CXCR4四个胞外域的所有可能组合。针对多种R5,X4和R5X4包膜糖蛋白和病毒株分别测试了表达CD4和单个嵌合共受体蛋白的稳定U87星形胶质瘤细胞系支持HIV-1介导的细胞融合和感染的能力。除U87.CD4.5455(在CCR5的背景下呈现CXCR4的第一个胞外环(ECL1)和侧翼序列)外,每种细胞系均促进与表达HIV包膜糖蛋白的细胞融合。但是,所有嵌合共受体均允许一种或多种测试病毒株进行有效感染。病毒表型是观察到的嵌合分子活性的预测因子。 X4和R5X4 HIV病毒株利用了大多数嵌合体,而R5病毒株感染表达这些嵌合分子的细胞的能力受到限制。 CXCR4骨架中CCR5 ECL2的表达支持R5初级分离株的感染,但没有带有CCR5 N末端的嵌合体对R5菌株显示活性。引人注目的是,将任何CXCR4域引入CCR5骨架都足以允许多个X4菌株利用。但是,在CXCR4的ECL2和/或ECL3中,所有X4病毒的关键决定簇在CXCR4中的这些结构域被CCR5序列替换后对于所有X4病毒都是显而易见的。出乎意料的是,在所有情况下,由于CXCR4特异性抑制剂AMD3100的存在,嵌合的促共受体促进的进入被阻止了。我们的数据证明CCR5包含支持X4病毒株使用的元素,并证明CCR5和CXCR4的gp120相互作用位点在结构上相关。

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