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Antiviral Mechanisms of the Yeast RNA Decay Machinery And Viral Countermeasures

Antiviral Mechanisms of the Yeast RNA Decay Machinery And Viral Countermeasures
酵母RNA衰变机制的抗病毒机制及病毒对策
批准号:
1020739
负责人:
Ambro van Hoof
金额:
$63.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-01 至 2015-08-31

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中文摘要
翻译
智力优势:宿主细胞已经发展出多种检测病毒感染和降低病毒载量的方法。产生抗病毒抗体的适应性免疫系统是抗病毒防御的一个很好的特征部分,但这种防御机制只在有颌脊椎动物中活跃。免疫系统的第二个分支,称为先天免疫系统,也可以对抗病毒感染。先天免疫系统存在于许多不同的真核生物物种中,并已在脊椎动物、无脊椎动物和植物中进行了研究,但对真菌的研究相对较少。这个项目将重点研究细胞用来对抗病毒的机制,以及病毒用来逃避宿主防御的策略。宿主防御的一个关键挑战是区分正常细胞rna和病毒入侵者编码的rna。宿主信使RNA通常包含一条单链RNA,在其5‘端被修饰为帽状结构,在其3’端被修饰为poly(a) tail。来自病毒的RNA可能是双链的,无帽的,和/或缺少聚(a)尾。先天免疫系统的几个分支可以识别病毒RNA的这些一般特征。这项研究的目的是通过使用贝克氏酵母和酵母杀手病毒来证明真核细胞对病毒感染有一种额外的先天免疫。酵母含有Ski蛋白,它在RNA衰变中起作用,并具有抗病毒功能。假设是酵母Ski蛋白识别缺乏聚(a)尾部的RNA,如病毒RNA,并将其作为降解目标。研究表明,L-A病毒有一个产生无帽细胞mRNA的过程,并将研究这一过程有助于病毒复制的机制。这项研究将为病毒逃避宿主先天免疫系统的机制提供新的见解。更广泛的影响:该研究为研究生和本科生提供了重要的教育机会。这项研究将在一个为本科生提供基础生物学研究机会的实验室进行。在实验室工作了一个夏天的本科生现在进入了一流的研究生院。本研究使用酵母遗传方法,特别适合教授学生产生假设的过程,设计实验来验证该假设,并在夏季研究项目中解释结果数据。与当地三所少数民族大学建立了联系,以帮助招募本科生参与拟议的研究。
英文摘要
Intellectual Merit: Host cells have developed a variety of methods to detect viral infection and reduce viral load. The adaptive immune system that generates antibodies against viruses is a well-characterized part of the antiviral defense, but this defense mechanism is only active in jawed-vertebrates. A second branch of the immune system, called the innate immune system, can also battle virus infection. The innate immune system is found in many different eukaryotic species and has been studied in vertebrates, invertebrates and plants, but remains relatively poorly studied in fungi. This project will focus on studying the mechanisms that cells use to combat viruses and the tactics that viruses, in return, use to evade host defenses. A key challenge in the host defense is to distinguish normal cellular RNAs from RNAs encoded by viral invaders. Host messenger RNA generally contains a single strand of RNA that is modified at its 5' start with a cap structure and at its 3' end with a poly(A) tail. RNA from viruses may be double stranded, uncapped, and/or lack a poly(A) tail. Several branches of the innate immune system recognize these general features of viral RNA. This research aims to demonstrate through the use of Baker's yeast and Yeast killer viruses that eukaryotic cells have an additional type of innate immunity against viral infection. Yeast contains Ski proteins, which function in RNA decay, and have an antiviral function. The hypothesis is that the yeast Ski proteins recognize RNA that lacks a poly(A) tail, such as viral RNA, and target it for degradation. It has been shown that the L-A virus has a process to produce uncapped cellular mRNA, and the mechanism by which this aids virus replication will also be investigated. The research will provide new insights into the mechanisms by which viruses evade the host innate immune system. Broader Impacts: The research includes significant educational opportunities for graduate and undergraduate students. The research will be carried out in a lab with an established track record of giving undergraduate students an opportunity to do basic biological research. Undergraduate students who have worked in the lab for a summer are now in top-tier graduate schools. This research uses yeast genetic methods, which are especially well suited to teach students the process of generating a hypothesis, designing experiments to test this hypothesis and interpreting the resulting data within a summer research program. Contacts with three local minority-serving universities have been established to help recruit undergraduate students to participate in the proposed research.
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会议论文
Conference: FASEB Mechanisms of mRNA decay; Big Sky, Montana; July 6 - July 11, 2014
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海外基金
Exploring the Intrinsic Mechanisms of CEO Turnover and Market
  • 批准号:
    --
  • 项目类别:
    外国学者研究基金
  • 资助金额:
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  • 批准年份:
    2024
  • 负责人:
    HAOFEI Z
  • 依托单位:
Exploring the Intrinsic Mechanisms of CEO Turnover and Market Reaction: An Explanation Based on Information Asymmetry
  • 批准号:
    W2433169
  • 项目类别:
    外国学者研究基金项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    HAOFEI ZHANG
  • 依托单位: