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Novel Role of CD8+ T Cells and Major Histocompatibility Complex Class I Genes in the Generation of Protective CD4+ Th1 Responses during Retrovirus Infection in Mice

机译:CD8 + T细胞和主要组织相容性复杂I类基因在小鼠逆转录病毒感染过程中保护性CD4 + Th1反应产生中的新型作用

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摘要

CD4+ Th1 responses to virus infections are often necessary for the development and maintenance of virus-specific CD8+ T-cell responses. However, in the present study with Friend murine retrovirus (FV), the reverse was also found to be true. In the absence of a responder H-2b allele at major histocompatibility complex (MHC) class II loci, a single H-2Db MHC class I allele was sufficient for the development of a CD4+ Th1 response to FV. This effect of H-2Db on CD4+ T-cell responses was dependent on CD8+ T cells, as demonstrated by depletion studies. A direct effect of CD8+ T-cell help in the development of CD4+ Th1 responses to FV was also shown in vaccine studies. Vaccination of nonresponder H-2a/a mice induced FV-specific responses of H-2Dd-restricted CD8+ cytotoxic T lymphocytes (CTL). Adoptive transfer of vaccine-primed CD8+ T cells to naive H-2a/a mice prior to infection resulted in the generation of FV-specific CD4+ Th1 responses. This novel helper effect of CD8+ T cells could be an important mechanism in the development of CD4+ Th1 responses following vaccinations that induce CD8+ CTL responses. The ability of MHC class I genes to facilitate CD4+ Th1 development could also be considerable evolutionary advantage by allowing a wider variety of MHC genotypes to generate protective immune responses against intracellular pathogens.
机译:CD4 + Th1对病毒感染的反应通常是开发和维持病毒特异性CD8 + T细胞反应的必要条件。但是,在使用Friend鼠逆转录病毒(FV)进行的本研究中,也发现事实恰好相反。在主要组织相容性复合体(MHC)II类位点没有应答者H-2b等位基因的情况下,单个H-2Db MHC I类等位基因足以形成对FV的CD4 + Th1反应。如耗竭研究所示,H-2Db对CD4 + T细胞反应的这种作用取决于CD8 + T细胞。疫苗研究还显示了CD8 + T细胞帮助直接发展出F4的CD4 + Th1反应。无反应的H-2a / a小鼠的疫苗接种诱导了H-2Dd限制性CD8 +细胞毒性T淋巴细胞(CTL)的FV特异性反应。在感染前将疫苗引发的CD8 + T细胞过继转移至幼稚H-2a / a小鼠导致FV特异性CD4 + Th1应答的产生。 CD8 + T细胞的这种新型辅助作用可能是诱导CD8 + CTL反应的疫苗接种后CD4 + Th1反应发展的重要机制。通过允许更多种MHC基因型产生针对细胞内病原体的保护性免疫应答,MHC I类基因促进CD4 + Th1发育的能力也可能具有相当大的进化优势。

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