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Assembly and Release of HIV-1 and Other Retroviruses

Assembly and Release of HIV-1 and Other Retroviruses
HIV-1 和其他逆转录病毒的组装和释放
批准号:
7338694
负责人:
Eric O Freed
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
我实验室的工作重点是了解HIV-1组装、释放和成熟的各个方面。主要研究领域包括HIV-1组装的亚细胞靶向,脂筏在HIV-1复制中的作用,HIV-1萌芽中的病毒和宿主因子,以及HIV-1成熟抑制剂PA-457 (Bevirimat)的作用机制。宿主因子Tsg101和Alix已被证明与HIV-1 Gag的p6区相互作用,并且我们之前证明过表达Tsg101的p6相互作用区域以显性阴性方式损害HIV-1出芽。我们现在发现,Alix中Gag结合域的过表达也能有效抑制HIV-1的Gag加工和病毒释放。这些研究表明逆转录病毒复制周期的出芽步骤可以以晚域特异性的方式靶向。我们还研究了质膜胆固醇在HIV-1组装和释放中的作用,随后我们发现病毒组装和出芽发生在富含胆固醇的脂筏微域。我们观察到胆固醇的消耗破坏了Gag与质膜的结合和Gag多聚,这表明质膜胆固醇,可能还有脂筏,帮助创造了一个稳定的Gag膜结合、Gag多聚和病毒释放的平台。我们还明确了胆固醇结合化合物AME的作用靶点和作用机制。在与Panacos制药公司的合作中,我们继续表征抗hiv -1化合物PA-457的作用机制。我们的数据表明,PA-457通过干扰Gag加工级联中的一个特定步骤来阻止病毒复制:衣壳间隔肽1 (CA- sp1)加工中间体向成熟CA的转化。Gag加工中的这种缺陷通过阻止HIV-1病毒粒子从药物处理的细胞释放后的成熟来消除病毒的感染性。我们试图确定能够赋予PA-457抗性的复制能力HIV-1变异的全谱。分离出6个单氨基酸取代,独立地赋予pa -457抗性。所有具有pa -457抗性的突变都指向Gag的CA-SP1连接点。对pa -457耐药的分离株在病毒复制、Gag加工动力学、病毒颗粒组装和释放以及病毒粒子形态方面的影响进行了表征。结果表明,pa -457抗性的获得与多种病毒表型相关,提示了多种抗性机制。这项研究为PA-457耐药性的出现提供了重要和新颖的见解。本文提出的结果将为分析患者对PA-457的耐药性以及开发其他化合物(如PA-457)提供信息,这些化合物通过破坏Gag加工途径中的特定步骤来阻止HIV-1的成熟。在过去的一年里,PA-457已经证明了降低感染患者病毒载量的能力,并且已经开始了该药物的扩大临床试验。
英文摘要
The work in my laboratory is focused on understanding a variety of aspects of HIV-1 assembly, release, and maturation. The major areas of investigation include the subcellular targeting of HIV-1 assembly, the role of lipid rafts in HIV-1 replication, viral and host factors in HIV-1 budding, and mechanism of action of the HIV-1 maturation inhibitor PA-457 (Bevirimat). The host factors Tsg101 and Alix have been shown to interact with the p6 region of HIV-1 Gag, and we previously demonstrated that overexpression of the p6-interacting region of Tsg101 impairs HIV-1 budding in a dominant-negative manner. We now find that overexpression of the Gag-binding domain from Alix also potently inhibits HIV-1 Gag processing and virus release. These studies indicate that the budding step of the retroviral replication cycle can be targeted in a late-domain-specific manner. We have also investigated the role of plasma membrane cholesterol in HIV-1 assembly and release, following up on our finding that virus assembly and budding take place in cholesterol-enriched lipid raft microdomains. We observe that cholesterol depletion disrupts both binding of Gag to the plasma membrane and Gag multimerization, suggesting that plasma membrane cholesterol, and probably lipid rafts, help create a platform for stable Gag membrane binding, Gag multimerization, and virus release. We have also defined the target and mechanism of action of the cholesterol-binding compound AME.In collaboration with Panacos Pharmaceuticals, we have continued to characterize the mechanism of action of the anti-HIV-1 compound PA-457. Our data indicate that PA-457 blocks virus replication by interfering with a specific step in the Gag processing cascade: the conversion of the capsid-spacer peptide 1 (CA-SP1) processing intermediate to mature CA. This defect in Gag processing abolishes virus infectivity by preventing maturation of HIV-1 virions following release from drug-treated cells. We sought to identify the full spectrum of replication-competent HIV-1 variants capable of conferring PA-457 resistance. Six single amino acid substitutions, which independently confer PA-457-resistance, were isolated. All PA-457-resistance-conferring mutations mapped to the CA-SP1 junction of Gag. The PA-457-resistant isolates were characterized with respect to their effects on virus replication, the kinetics of Gag processing, virus particle assembly and release, and virion morphology. The results demonstrate that acquisition of PA-457-resistance is associated with a variety of viral phenotypes, suggesting multiple mechanisms of resistance. This study provides significant and novel insights into the emergence of resistance to PA-457. The results presented here will inform both the analysis of PA-457 resistance in patients and the development of additional compounds that, like PA-457, block HIV-1 maturation by disrupting specific steps in the Gag processing pathway. During the past year, PA-457 has demonstrated the ability to reduce viral loads in infected patients and expanded clinical trials of this drug have been initiated.
期刊论文(5)
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会议论文
HIV 1 GAG AND ENV PROTEINS IN VIRUS ASSEMBLY AND INFECTION
HIV 1 GAG AND ENV PROTEINS IN VIRUS ASSEMBLY AND INFECTION
HIV 1 Gag And Env Proteins In Virus Assembly And Infecti
Hiv 1 Gag And Env Proteins In Virus Assembly/ Infection
国内基金
海外基金
Capture and Release of Droplets Using Advanced Materials for High Technology Applications
  • 批准号:
    52073127
  • 项目类别:
    面上项目
  • 资助金额:
    58.0万元
  • 批准年份:
    2020
  • 负责人:
    Alidad Amirfazli
  • 依托单位: