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Viral Adaptation to Host Selenium Status

Viral Adaptation to Host Selenium Status
病毒对宿主硒状态的适应
批准号:
7785889
负责人:
Melinda A. Beck
金额:
$37.0万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-04-01 至 2013-03-31

项目摘要

项目成果

Melinda A. Beck的其他基金

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中文摘要
翻译
描述(由申请人提供):我们实验室先前的工作已经证明,在缺硒动物中复制的柯萨奇病毒B3的人分离株发生特定的病毒突变。这些病毒突变导致病毒的毒力增加,使通常无毒的病毒变得有毒。这些特定的稳定突变在营养缺乏的条件下反复进化。此外,我们最近已经证明,一个营养不良的人群感染柯萨奇病毒A9(另一种人类肠道病毒)表现出快速和显着的序列差异,这种病毒。因此,我们首次证明了动物和人类的营养状况可以深刻影响病毒病原体的基因组,从而产生新的病毒株。我们发现宿主营养状况是病毒突变/进化的驱动力,这为研究宿主营养与病毒进化过程的相互作用提供了一个新的领域。我们认为,宿主营养状况是病毒出现的一个未被充分认识的因素,我们拥有实验室模型和人分离株,可以为阐明营养不良宿主中病毒种群的行为做出重大贡献。这项研究的最终长期目标是在分子水平上确定病毒种群的变化模式,这将有助于识别和预测新的或改变的病原体的出现和传播。我们认为,宿主营养状况作为病毒进化的驱动力被广泛忽视,尽管新的病毒株和具有新致病特性的旧病毒株经常发生在广泛营养不良的人群中。因此,我们的研究提供了一个独特的机会,了解宿主营养和病毒基因组进化之间的相互作用。这项资助是一项跨学科的研究,涉及营养学、病毒学、进化生物学和计算生物学领域。我们的模型系统将开始作为细胞培养研究,以开发病毒进化模型,然后通过扩展到动物模型进行测试。最后,我们将使用从导致病毒突变的人类营养应激中获得的病毒分离株来测试我们的模型的稳健性。 公共卫生相关性:新出现的传染病对世界人口构成持续威胁。尽管许多因素导致了新病原体的出现,包括旅行、全球变暖、引入新物种等,宿主的营养状况尚未得到广泛考虑。该项目旨在了解硒营养状况如何影响病毒适应的变化。其目标是开发工具来预测新出现的传染病的爆发。
英文摘要
DESCRIPTION (provided by applicant): Previous work in our laboratory has demonstrated that a human isolate of coxsackievirus B3 replicating in a selenium deficient animal develops specific viral mutations. These viral mutations result in increased virulence of the virus, allowing a normally avirulent virus to become virulent. These same specific stable mutations repeatedly evolve under conditions of nutritional deficiency. In addition, we have recently demonstrated that a nutritionally-deficient human population infected with coxsackievirus A9 (another human enterovirus) exhibited rapid and significant sequence divergence of this virus. Thus, we demonstrated for the first time that the nutritional status of both animals and humans can profoundly influence the genome of a viral pathogen, leading to a new viral strain. Our discovery that host nutritional status is a driving force for viral mutation/evolution, suggested a new area for research, namely the interaction of host nutrition and viral evolutionary processes. We believe that host nutritional status is an underappreciated factor in viral emergence, and that we possess both the laboratory models and the human isolates to make a substantial contribution to elucidating the behavior of virus populations in hosts with suboptimal nutrition. The ultimate, long-term goal of this research is to identify patterns of change in virus populations, on the molecular level, that will facilitate the ability to recognize and predict the emergence and spread of a new or altered pathogen. We propose that host nutritional status has been widely ignored as a driving force for viral evolution, despite the fact that new viral strains, and old viral strains with newly pathogenic properties, often occur in populations with widespread malnutrition. Thus, our studies provide a unique opportunity to understand the interaction between host nutrition and viral genome evolution. This grant is an interdisciplinary study involving the fields of nutrition, virology, evolutionary biology, and computational biology. Our model system will begin as a cell culture study to develop models of virus evolution which will then be tested by expanding into animal models. Finally, we will test the robustness of our models using viral isolates obtained from a human nutritional stress that resulted in viral mutation. PUBLIC HEALTH RELEVANCE: Emerging infectious diseases are a continuing threat to the world's population. Although many factors contribute to the emergence of new pathogens, including travel, global warming, introduction into new species, etc., nutritional status of the host has not been widely considered. This project is designed to understand how selenium nutritional status can impact changes in viral adaptation. The goal is to develop tools to predict outbreaks of emerging infectious diseases.
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会议论文
Nutritional Biocliemistry and Metabolomics Core
FASEB SRC on Nutritional Immunology: Its effects on health and disease.
Viral Adaptation to Host Selenium Status
Viral Adaptation to Host Selenium Status
海外基金