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Reverse Genetics of Arenaviruses.

Reverse Genetics of Arenaviruses.
沙粒病毒的反向遗传学。
批准号:
7744639
负责人:
Juan C. de la Torre
金额:
$42.21万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-02-15 至 2011-12-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):沙粒病毒作为研究急性和持续性病毒感染的易于处理的实验模型系统和临床重要的人类病原体都值得关注。几种沙粒病毒引起人类出血热(HF)疾病,而原型沙粒病毒LCMV是研究病毒免疫学和发病机制领域基本概念的极好工具。此外,有证据表明LCMV是一种被忽视的具有临床意义的人类病原体。我们的长期目标是获得沙粒病毒分子和细胞生物学的详细了解。这些知识将有助于阐明沙粒病毒与宿主的相互作用和相关疾病,并有助于制定有效的策略来对抗沙粒病毒感染。为此,我们开发了LCMV的反向遗传系统,为沙粒病毒生物学研究提供了一种新颖而有力的方法。这一建议的重点是功能表征病毒和细胞蛋白,及其相互作用,介导控制沙粒病毒RNA合成,颗粒形成和病毒出芽。我们的具体目标是:1。探讨Z-NP在控制病毒RNA合成中的作用。我们将验证Z- NP相互作用是Z对病毒RNA合成的抑制活性的原因。我们将使用生化和遗传方法来确定Z-NP相互作用所需的Z和NP区域,并使用反向遗传方法来检查破坏Z-NP相互作用的功能后果。2. 确定Z-GP相互作用在沙粒病毒感染性颗粒产生中的作用。我们已经证明,感染性VLP的产生需要Z和GP,并表明Z和GP相互作用。我们将从生物化学和功能上定义这种Z-GP相互作用。我们将验证以下假设:传染性粒子的产生需要正确的Z-GPcx结合,并且这种相互作用是由Z和GP复合体的GP-2组分(GPcx)内的特定区域介导的。3. 确定在沙粒病毒感染的自然过程中zl结构域基序的功能。我们将使用反向遗传学来挽救携带不同类型l结构域Z蛋白的rLCMV。这些rLCMV将用于细胞培养和小鼠感染模型,以验证Z中存在的L结构域基序类型影响病毒生长和毒力的假设。4. 鉴定和功能表征影响z介导出芽的宿主蛋白。我们将验证含有不同l结构域的Z蛋白参与MVB途径E类蛋白的不同亚群的假设,并且这些差异影响病毒-宿主相互作用和相关疾病。我们将使用蛋白质组学方法来定义Z相互作用组。作为一种补充方法,我们将使用基于sirna的筛选来识别有助于z介导出芽的细胞因子。我们将使用生化、遗传学和功能分析来评估最初通过蛋白质组学和遗传学方法确定的候选沙粒病毒生物学的相关性。公共卫生相关性:
英文摘要
DESCRIPTION (provided by applicant): Arenaviruses merit significant interest both as tractable experimental model systems to study acute and persistent viral infections and as clinically important human pathogens. Several arenaviruses cause hemorrhagic fever (HF) disease in humans, whereas the prototypic Arenavirus LCMV is a superb workhorse for the investigation of basic concepts in the fields of viral immunology and pathogenesis. In addition, evidence indicates that LCMV is a neglected human pathogen of clinical significance. Our long- term objective is to obtain a detailed understanding of the Arenavirus molecular and cell biology. This knowledge will contribute to the elucidation of Arenavirus-host interactions and associated diseases, and facilitate the development of effective strategies to combat Arenavirus infections. To this end we have developed a reverse genetics system for LCMV that provides us with a novel and powerful approach for the investigation of Arenavirus biology. The focus of this proposal is to functionally characterize viral and cellular proteins, and their interactions, which mediate control of Arenavirus RNA synthesis, particle formation and viral budding. Our specific aims are: 1. To Assess the role of Z-NP In control of viral RNA synthesis. We will test the hypothesis that Z- NP interaction is responsible for the inhibitory activity of Z on viral RNA synthesis. We will use biochemical and genetic approaches to identify the regions of Z and NP required for Z-NP interaction, and use reverse genetic approaches to examine the functional consequences of disrupting Z-NP interaction. 2. Determine the role of Z-GP interaction in production of arenavirus infectious particles. We have demonstrated that production of infectious VLP requires Z and GP, and shown that Z and GP interact. We will define biochemically and functionally this Z-GP interaction. We will test the hypothesis that the correct Z-GPcx association is required for the production of infectious particles, and that this interaction is mediated by defined regions within Z and the GP-2 component of the GP complex (GPcx). 3. Determined the function of Z L domain motifs during the natural course of Arenavirus infection. We will use reverse genetics to rescue rLCMV carrying Z proteins with different types of L-domains. These rLCMV will be used in cell culture and mice models of infection to test the hypothesis that the type of L- domain motifs present in Z influences viral growth and virulence. 4. Identify and functionally characterize host proteins that influence Z-mediated budding. We will test the hypothesis that Z proteins containing different L-domains engage distinct subsets of Class E proteins of the MVB pathway, and that these differences influence virus-host interactions and associated diseases. We will use proteomic approaches to define the Z interactome. As a complementary approach we will use siRNA-based screenings to identify cellular factors that contribute to Z-mediated budding. We will use biochemical, genetics and functional assays to assess the relevance in Arenavirus biology of candidates initially identified by proteomic and genetic approaches. PUBLIC HEALTH RELEVANCE: Several arenaviruses cause hemorrhagic fever (HF) disease in humans, and mounting evidence indicates that the worldwide-distributed prototypic arenavirus LCMV is a neglected human pathogen of clinical significance. Moreover, weaponized forms of arenaviruses pose a serious threat as agents of bioterrorism. No licensed anti-arenavirus vaccines are available, and current anti-arenavirus therapy is limited to the use of ribavirin, which is only partially effective and often associated with severe side effects. Therefore it is important to develop novel antiviral strategies to combat arenaviral infections. A detailed understanding of the arenavirus molecular will facilitate this task and cell biology, which is the long-term goal of the studies proposed in this application.
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Improving The Scripps Research Institute BSL3 Capabilities to Combat Viruses of Pandemic Concern
  • 批准号:
    10611798
  • 项目类别:
  • 资助金额:
    $386.96万
  • 财政年份:
    2022
  • 负责人:
    Juan C. de la Torre
  • 依托单位:
Designing mammarenavirus live vaccines with unbreachable attenuation
  • 批准号:
    10535058
  • 项目类别:
  • 资助金额:
    $26.63万
  • 财政年份:
    2022
  • 负责人:
    Juan C. de la Torre
  • 依托单位:
Designing mammarenavirus live vaccines with unbreachable attenuation
  • 批准号:
    10664016
  • 项目类别:
  • 资助金额:
    $22.19万
  • 财政年份:
    2022
  • 负责人:
    Juan C. de la Torre
  • 依托单位:
Development and validation of antivirals against hemorrhagic fever viruses of pandemic concern
  • 批准号:
    10514329
  • 项目类别:
  • 资助金额:
    $686.93万
  • 财政年份:
    2022
  • 负责人:
    Juan C. de la Torre
  • 依托单位:
海外基金