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In Vivo Genetic Fate Mapping of T-cell Receptor Signal Strength.

机译:T细胞受体信号强度的体内遗传命运映射。

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摘要

Following acute infection, rare naive T-cells expand in number, differentiate into effector cells, and acquire functions to combat the pathogen. Resolution of the response results in the death of a majority of the effector cells and survival of a small population of memory T-cells with properties that contribute to increased protection from reinfection. Many T-cell intrinsic and extrinsic signals have been found to enhance or detract from effector and memory cell differentiation. It has been postulated that strength of antigen-receptor signals influences subsequent fate of naive T-cells during the effector to memory transition, however, the nature of these signals and mechanisms of action are unclear.;An approach was taken to genetically mark populations of T-cells in mice that differed in the amount of antigen-receptor stimulation. By using this method with the well characterized acute lymphocytic choriomeningitis virus (LCMV) model of infection, the fate of antigen-specific CD4+ effector T-cells generated as a result of different amounts of TCR signal strength was determined in vivo. Our findings provide in vivo evidence in support of a deterministic model of CD4+ memory generation following acute viral infection where programming events driven in part by the strength of initial antigen-receptor stimulation influence the fate of responding CD4+ cells during the transition to memory.
机译:急性感染后,稀有的幼稚T细胞数量增加,分化成效应细胞,并具有抵抗病原体的功能。反应的解决导致大多数效应细胞死亡和少量记忆T细胞的存活,这些记忆T细胞的特性有助于增加对再感染的保护。已经发现许多T细胞内源性和外源性信号增强或减低效应细胞和记忆细胞的分化。据推测,抗原受体信号的强度会影响效应子到记忆过渡过程中幼稚T细胞的后续命运,但是,这些信号的性质和作用机理尚不清楚。小鼠中的T细胞,抗原受体刺激的量不同。通过将该方法与特征明确的急性淋巴细胞性脉络膜脑膜炎病毒(LCMV)感染模型一起使用,可以确定体内由于不同量的TCR信号强度而产生的抗原特异性CD4 +效应T细胞的命运。我们的发现提供了体内证据,支持急性病毒感染后CD4 +记忆生成的确定性模型,其中部分由初始抗原受体刺激强度驱动的编程事件会影响到记忆过渡过程中应答CD4 +细胞的命运。

著录项

  • 作者

    Chmura, Stephen A.;

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Biology Genetics.;Health Sciences Immunology.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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