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ABSTRACT Prions are infectious, self-propagating protein aggregates that were first described in the context of the transmissible spongiform encephalopathies (TSEs), a group of fatal neurodegenerative diseases that afflict humans and other mammals. The culprit in the case of the TSEs is an endogenous protein called PrP that has an inherent ability to undergo a dramatic conformational conversion, leading to the formation of distinctive cross-b aggregates (termed amyloid) that are both self-templating and infectious. Prions have also been uncovered in budding yeast and other fungi, where they act as protein-based genetic elements that confer new heritable phenotypes on those cells that harbor them. Like PrP, fungal prion proteins can access alternative conformational states, a soluble form and a self-perpetuating, amyloid form (the prion form) that is infectious. Unlike PrP-based prions, however, fungal prions do not typically cause cell death; they can, in fact, enhance cell survival under specific stress conditions. The foundation for the proposed studies is our discovery that prion proteins also exist in bacteria. Our research goals are to investigate the scope of prion-like phenomena in bacteria and to probe the physiologic significance of prions in bacteria. An overarching hypothesis informing our work is that protein-based heredity can serve as an epigenetic source of phenotypic diversity in the bacterial domain of life. As well as using E. coli cells as a model in which to study prion proteins from diverse bacteria, we are extending our studies to encompass species that naturally contain prion proteins, including constituents of the human microbiota. A major methodological focus of our long-term research program has been the development of broadly applicable genetic assays, and our work here includes the development and implementation of bacteria-based genetic assays that can detect prion conversion events. These genetic tools will enable screening for prion protein encoded in bacterial (and other) genomes, facilitating the discovery of new prion proteins and potentially also new classes of prion proteins. At the same time, our tools provide facile methods for addressing mechanistic questions about prion formation and prion propagation. Our approach to understanding prion biology is multi-faceted, encompassing ongoing collaboration with structural biologists and biophysicists. Because prion proteins in all domains of life share fundamental properties, what we learn in bacteria could provide mechanistic insight relevant to prion proteins in other settings; furthermore, our bacteria- based tools can be used to investigate the behavior of bacterial and non-bacterial prion proteins alike. Bacterial prions could have far-reaching human health implications; for example, as a source of non-genetic phenotypic heterogeneity, prions might enhance bacterial fitness in a pathogenic context. Moreover, the presence of prions in the human microbiota could potentially impact human health via cross-Kingdom templating interactions involving disease-associated human proteins.
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Prions in the bacterial domain of life
  • 批准号:
    10573151
  • 项目类别:
  • 资助金额:
    $45.29万
  • 财政年份:
    2020
  • 负责人:
    Ann Hochschild
  • 依托单位:
Amyloid aggregation and prion formation in bacteria
  • 批准号:
    9551739
  • 项目类别:
  • 资助金额:
    $1.59万
  • 财政年份:
    2016
  • 负责人:
    Ann Hochschild
  • 依托单位:
Amyloid aggregation and prion formation in bacteria
  • 批准号:
    9102529
  • 项目类别:
  • 资助金额:
    $47.79万
  • 财政年份:
    2016
  • 负责人:
    Ann Hochschild
  • 依托单位:
A new genetic approach for studying prions and other pathogenic protein aggregate
  • 批准号:
    8137722
  • 项目类别:
  • 资助金额:
    $83.9万
  • 财政年份:
    2008
  • 负责人:
    Ann Hochschild
  • 依托单位:
国内基金
海外基金
基于聚金属氧酸盐对Amyloid蛋白的定点化学修饰及其在阿尔茨海默症治疗中的应用
  • 批准号:
    22077118
  • 项目类别:
    面上项目
  • 资助金额:
    63.0万元
  • 批准年份:
    2020
  • 负责人:
    高楠
  • 依托单位:
基于S1P通路探究Amyloid-β在干性年龄相关性黄斑变性中的作用
  • 批准号:
    81870666
  • 项目类别:
    面上项目
  • 资助金额:
    57.0万元
  • 批准年份:
    2018
  • 负责人:
    王海燕
  • 依托单位:
Amyloid-beta-PirB 相互作用介导小胶质细胞表型和功能变化参与AD进展的机制研究
  • 批准号:
    81601123
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    17.0万元
  • 批准年份:
    2016
  • 负责人:
    都瑾
  • 依托单位:
Beta-amyloid寡聚体特有的抗原表位多肽疫苗的研究
  • 批准号:
    30971012
  • 项目类别:
    面上项目
  • 资助金额:
    35.0万元
  • 批准年份:
    2009
  • 负责人:
    刘瑞田
  • 依托单位: