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人类原代CD4 T细胞对具有复制能力的痘苗病毒反应中的优势与多样性

Dominance and diversity in the primary human CD4 T cell response to replication-competent vaccinia virus.

作者信息

Jing Lichen, Chong Tiana M, Byrd Benjamin, McClurkan Christopher L, Huang Jay, Story Brian T, Dunkley Karissa M, Aldaz-Carroll Lydia, Eisenberg Roselyn J, Cohen Gary H, Kwok William W, Sette Allesandro, Koelle David M

机构信息

Department of Medicine, University of Washington, Seattle 98101, USA.

出版信息

J Immunol. 2007 May 15;178(10):6374-86. doi: 10.4049/jimmunol.178.10.6374.

Abstract

Vaccination with replication-competent vaccinia protects against heterologous orthopoxvirus challenge. CD4 T cells have essential roles helping functionally important Ab and CD8 antiviral responses, and contribute to the durability of vaccinia-specific memory. Little is known about the specificity, diversity, or dominance hierarchy of orthopoxvirus-specific CD4 T cell responses. We interrogated vaccinia-reactive CD4 in vitro T cell lines with vaccinia protein fragments expressed from an unbiased genomic library, and also with a panel of membrane proteins. CD4 T cells from three primary vaccinees reacted with 44 separate antigenic regions in 35 vaccinia proteins, recognizing 8 to 20 proteins per person. The integrated responses to the Ags that we defined accounted for 49 to 81% of the CD4 reactivity to whole vaccinia Ag. Individual dominant Ags drove up to 30% of the total response. The gene F11L-encoded protein was immunodominant in two of three subjects and is fragmented in a replication-incompetent vaccine candidate. The presence of protein in virions was strongly associated with CD4 antigenicity. These findings are consistent with models in which exogenous Ag drives CD4 immunodominance, and provides tools to investigate the relationship between Ab and CD4 T cell specificity for complex pathogens.

摘要

接种具有复制能力的痘苗可抵御异源正痘病毒的攻击。CD4 T细胞在辅助功能重要的抗体和CD8抗病毒反应中发挥着关键作用,并有助于痘苗特异性记忆的持久性。关于正痘病毒特异性CD4 T细胞反应的特异性、多样性或优势等级,人们了解甚少。我们用从无偏差基因组文库表达的痘苗蛋白片段以及一组膜蛋白,在体外检测了对痘苗有反应的CD4 T细胞系。来自三名初次接种疫苗者的CD4 T细胞与35种痘苗蛋白中的44个不同抗原区域发生反应,每人识别8至20种蛋白。我们定义的对这些抗原的综合反应占对全痘苗抗原CD4反应性的49%至81%。个别优势抗原驱动了高达30%的总反应。基因F11L编码的蛋白在三名受试者中的两名中具有免疫优势,并且在一种无复制能力的候选疫苗中是片段化的。病毒粒子中蛋白的存在与CD4抗原性密切相关。这些发现与外源性抗原驱动CD4免疫优势的模型一致,并提供了工具来研究针对复杂病原体的抗体和CD4 T细胞特异性之间的关系。

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