Hanke T, Takizawa H, Raulet D H
Institute for Virology and Immunobiology, University of Würzburg, Würzburg, Germany.
Eur J Immunol. 2001 Nov;31(11):3370-9. doi: 10.1002/1521-4141(200111)31:11<3370::aid-immu3370>3.0.co;2-2.
Engagement of MHC class I-specific inhibitory receptors regulates natural killer (NK) cell development and function. Using both new and previously characterized anti-Ly49 monoclonal antibodies, we comprehensively determined expression and co-expression frequencies of four Ly49 receptors by NK cells from MHC-congenic, MHC class I-deficient, and Ly49A-transgenic mice to study mechanisms that shape the inhibitory Ly49 repertoire. All Ly49 receptors were expressed on partially overlapping subsets. Significantly, in the absence of class I MHC, several receptor pairs were co-expressed more frequently than predicted from a purely random expression model, indicating that biases independent of MHC class I underlie receptor co-expression in some cases. MHC interactions were found to inhibit Ly49 co-expression variably depending on the MHC allele and the receptor pair examined. These data extend previous evidence that interactions with MHC shape the repertoire. It was previously proposed that developing NK cells express Ly49 receptors sequentially and cumulatively, until self-MHC specific receptors are expressed and inhibit new receptor expression. Fulfilling a major prediction of this model, we found that class I recognition by a Ly49A transgene expressed by all developing NK cells equivalently inhibited expression of endogenous self-specific and nonself-specific Ly49 receptors.
MHC I类特异性抑制性受体的参与调节自然杀伤(NK)细胞的发育和功能。我们使用新的和先前已鉴定的抗Ly49单克隆抗体,全面测定了来自MHC同基因、MHC I类缺陷和Ly49A转基因小鼠的NK细胞中四种Ly49受体的表达和共表达频率,以研究塑造抑制性Ly49受体库的机制。所有Ly49受体都在部分重叠的亚群上表达。值得注意的是,在没有I类MHC的情况下,一些受体对的共表达频率比纯随机表达模型预测的更高,这表明在某些情况下,独立于MHC I类的偏差是受体共表达的基础。根据所检测的MHC等位基因和受体对的不同,发现MHC相互作用对Ly49共表达的抑制作用存在差异。这些数据扩展了先前关于与MHC相互作用塑造受体库的证据。先前有人提出,发育中的NK细胞依次累积表达Ly49受体,直到表达自身MHC特异性受体并抑制新受体的表达。为了验证该模型的一个主要预测,我们发现所有发育中的NK细胞等效表达的Ly49A转基因对I类的识别同样抑制了内源性自身特异性和非自身特异性Ly49受体的表达。