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体内细胞毒性T淋巴细胞逃逸变异免疫缺陷病毒的逆转

Reversion of CTL escape-variant immunodeficiency viruses in vivo.

作者信息

Friedrich Thomas C, Dodds Elizabeth J, Yant Levi J, Vojnov Lara, Rudersdorf Richard, Cullen Candice, Evans David T, Desrosiers Ronald C, Mothé Bianca R, Sidney John, Sette Alessandro, Kunstman Kevin, Wolinsky Steven, Piatak Michael, Lifson Jeffrey, Hughes Austin L, Wilson Nancy, O'Connor David H, Watkins David I

机构信息

Wisconsin National Primate Research Center, Madison, Wisconsin 53715, USA.

出版信息

Nat Med. 2004 Mar;10(3):275-81. doi: 10.1038/nm998. Epub 2004 Feb 15.

Abstract

Engendering cytotoxic T-lymphocyte (CTL) responses is likely to be an important goal of HIV vaccines. However, CTLs select for viral variants that escape immune detection. Maintenance of such escape variants in human populations could pose an obstacle to HIV vaccine development. We first observed that escape mutations in a heterogeneous simian immunodeficiency virus (SIV) isolate were lost upon passage to new animals. We therefore infected macaques with a cloned SIV bearing escape mutations in three immunodominant CTL epitopes, and followed viral evolution after infection. Here we show that each mutant epitope sequence continued to evolve in vivo, often re-establishing the original, CTL-susceptible sequence. We conclude that escape from CTL responses may exact a cost to viral fitness. In the absence of selective pressure upon transmission to new hosts, these original escape mutations can be lost. This suggests that some HIV CTL epitopes will be maintained in human populations.

摘要

引发细胞毒性T淋巴细胞(CTL)反应可能是HIV疫苗的一个重要目标。然而,CTL会选择那些能够逃避免疫检测的病毒变体。这些逃避变体在人群中的维持可能会对HIV疫苗的开发构成障碍。我们首先观察到,在一种异质性猿猴免疫缺陷病毒(SIV)分离株中,逃避突变在传给新动物时会丢失。因此,我们用一种在三个免疫显性CTL表位带有逃避突变的克隆SIV感染猕猴,并在感染后跟踪病毒的进化。在此我们表明,每个突变表位序列在体内继续进化,常常重新建立起原来对CTL敏感的序列。我们得出结论,逃避CTL反应可能会对病毒适应性造成代价。在传播到新宿主时缺乏选择压力的情况下,这些原来的逃避突变可能会丢失。这表明一些HIV CTL表位将在人群中得以维持。

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