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Role of gp-340 in HIV Infection and Transmission

Role of gp-340 in HIV Infection and Transmission
gp-340 在 HIV 感染和传播中的作用
批准号:
7231635
负责人:
DREW WEISSMAN
金额:
$37.57万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-06-15 至 2009-05-31

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中文摘要
翻译
描述(由申请人提供):HIV-1进入靶细胞需要病毒包膜(Env)蛋白、CD4和趋化因子受体辅助受体之间的相互作用。病毒附着于细胞表面,这可能是感染的限速步骤,可以通过与各种分子的相互作用介导,其中只有一些已经被很好地表征。Gp-340是富含半胱氨酸的清道夫受体家族的一员。作为肺先天免疫系统的一部分,它存在于肺泡巨噬细胞上,结合表面活性剂蛋白清除细菌。我们先前证明gp-340以高亲和力结合HIV Env,并以其可溶性形式抑制HIV感染。某些针对gp-340的特异性抗体抑制Env与gp-340的结合,用这些抗体治疗表达细胞表面gp-340的单核细胞源性巨噬细胞可减少急性HIV-1感染;提示可溶性gp-340和细胞表面gp-340对病毒感染有相反的作用。包括生殖道上皮细胞在内的上皮细胞也表达Gp-340。我们观察到表达gp-340的生殖器上皮细胞与HIV的脉冲导致有效的结合和感染转移到CD4+ T细胞(感染)。gp-340的结合可提高病毒的传染性和半衰期,并可被抗gp-340抗体和与gp-340结合的Env肽抑制。与其他不介导融合但促进反式感染的HIV Env结合分子(DC-SIGN, syndecan和甘露糖受体)结合Env碳水化合物不同,gp-340和Env之间的相互作用似乎涉及Env上的蛋白质。假设通过gp-340与HIV Env之间的特定相互作用;gp-340介导HIV感染。我们将从四个方面验证这一假设:1)鉴定用于结合HIV Env的gp-340-Tm的表位和氨基酸残基;2)与gp-340-Tm结合的重要环境决定因子分析;3) gp-340-Tm在HIV传播中的作用研究;4) HIV与表达内源性gp-340的生殖道上皮细胞结合后的贩运研究。由于gp-340在艾滋病毒免疫发病机制(肺、脑、淋巴组织)和传播机制(生殖器上皮细胞)的许多领域都有表达,因此这些研究对于进一步了解艾滋病毒的传播和发病机制以及制定干扰艾滋病毒传播、感染和复制的潜在途径将具有重要意义。
英文摘要
DESCRIPTION (provided by applicant): The entry of HIV-1 into target cells requires interactions between the viral envelope (Env) protein, CD4, and a chemokine receptor coreceptor. Attachment of virus to the cell surface, which may be the rate limiting step to infection, can be mediated by interactions with a variety of molecules, only some of which have been well characterized. Gp-340 is a member of the scavenger receptor cysteine-rich family. It is found on alveolar macrophages and binds surfactant proteins to clear bacteria as part of the lung innate immune system. We previously demonstrated that gp-340 binds HIV Env with high affinity and, in its soluble form, inhibits HIV infection. Certain specific antibodies against gp-340 inhibit binding of Env to gp-340 and treatment of monocyte derived macrophages expressing cell surface gp-340 with such antibodies diminishes acute HIV-1 infection; suggesting that soluble and cell surface gp-340 have opposite effects on viral infection. Gp-340 is also expressed by epithelial cells including ones that line the genital tract. We observed that pulsing of genital epithelial cells expressing gp-340 with HIV results in efficient binding and transfer of infection to CD4+ T cells trans-infection). The binding by gp-340 increases the infectivity and half-life of virus and can be inhibited by anti-gp-340 antibodies and Env peptides shown to bind to gp-340. Unlike other HIV Env binding molecules that do not mediate fusion but promote trans-infection (DC-SIGN, syndecan, and mannose receptor) that bind Env carbohydrate, the interaction between gp-340 and Env appears to involve protein on Env. The hypothesis is that through specific interactions between gp-340 and HIV Env; gp-340 mediates trans- HIV infection. We will test this hypothesis in four specific aims: 1) the Identification of the epitope and amino acid residues of gp-340-Tm used in binding to HIV Env; 2) the analysis of Env determinants important in binding to gp-340-Tm; 3) the investigation of the role of gp-340-Tm in transmission of HIV; and 4) studies of the trafficking of HIV after binding to genital tract epithelial cells expressing endogenous gp-340. As gp-340 is expressed in many areas of HIV immunopathogenesis (lung, brain, lymphoid tissue) and transmission (genital epithelial cells), these studies will be important in further understanding HIV transmission and pathogenesis and for formulating potential avenues of interference in HIV transmission, infection, and replication.
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Core A: Administrative
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  • 项目类别:
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    DREW WEISSMAN
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海外基金