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小鼠乳腺肿瘤病毒的超抗原

Superantigens of mouse mammary tumor virus.

作者信息

Acha-Orbea H, MacDonald H R

机构信息

Institute of Biochemistry, Lausanne Branch, University of Lausanne, Epalinges, Switzerland.

出版信息

Annu Rev Immunol. 1995;13:459-86. doi: 10.1146/annurev.iy.13.040195.002331.

Abstract

Superantigens (SAgs) are proteins of microbial origin that bind to major histocompatibility complex (MHC) class II molecules and stimulate T cells via interaction with the V beta domain of the T cell receptor (TCR). Mouse mammary tumor virus (MMTV) is a milk-transmitted type B retrovirus that encodes a SAg in its 3' long terminal repeat. Upon MMTV infection, B cells present SAg to the appropriate T cell subset, which leads to a strong "cognate" T-B interaction. This immune reaction results in preferential clonal expansion of infected B cells and differentiation of some of these cells into long-lived memory cells. In this way a stable MMTV infection is achieved that ultimately results in infection of the mammary gland and virus transmission via milk. Thus, in contrast to many microorganisms that attempt to evade the host immune system (reviewed in 1), MMTV depends upon a strong SAg-induced immune response for its survival. Because of their ability to stimulate very strong T cell responses in MHC-identical mice, minor lymphocyte stimulatory (Mls) antigens, discovered more than 20 years ago, are now known to be SAgs encoded by endogenous MMTV proviruses that have randomly integrated into germ cells. The aim of this review is to combine the extensive biology of Mls SAgs with our current understanding of the life cycle of MMTV.

摘要

超抗原(SAgs)是微生物来源的蛋白质,可与主要组织相容性复合体(MHC)II类分子结合,并通过与T细胞受体(TCR)的Vβ结构域相互作用来刺激T细胞。小鼠乳腺肿瘤病毒(MMTV)是一种通过乳汁传播的B型逆转录病毒,在其3'长末端重复序列中编码一种超抗原。MMTV感染后,B细胞将超抗原呈递给合适的T细胞亚群,这会导致强烈的“同源”T-B相互作用。这种免疫反应导致受感染B细胞的优先克隆扩增,并使其中一些细胞分化为长寿记忆细胞。通过这种方式实现了稳定的MMTV感染,最终导致乳腺感染并通过乳汁传播病毒。因此,与许多试图逃避宿主免疫系统的微生物不同(参考文献1中有综述),MMTV的生存依赖于超抗原诱导的强烈免疫反应。由于它们能够在MHC相同的小鼠中刺激非常强烈的T细胞反应,20多年前发现的次要淋巴细胞刺激(Mls)抗原现在已知是由随机整合到生殖细胞中的内源性MMTV前病毒编码的超抗原。本综述的目的是将Mls超抗原的广泛生物学特性与我们目前对MMTV生命周期的理解结合起来。

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