Li LiQi, Sullivan Barbara A, Aldrich Carla J, Soloski Mark J, Forman James, Grandea Andres G, Jensen Peter E, Van Kaer Luc
Department of Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
J Immunol. 2004 Sep 15;173(6):3707-15. doi: 10.4049/jimmunol.173.6.3707.
The loading of MHC class I molecules with peptides involves a variety of accessory proteins, including TAP-associated glycoprotein (tapasin), which tethers empty MHC class I molecules to the TAP peptide transporter. We have evaluated the role of tapasin for the assembly of peptides with the class Ib molecule Qa-1b. In normal cells, Qa-1b is predominantly bound by a peptide, the Qa-1 determinant modifier (Qdm), derived from the signal sequence of class Ia molecules. Our results show that tapasin links Qa-1b to the TAP peptide transporter, and that tapasin facilitates the delivery of Qa-1b molecules to the cell surface. Tapasin was also required for the presentation of endogenous Qdm peptides to Qdm-specific, Qa-1b-restricted CTLs. In sharp contrast, tapasin expression was dispensable for the presentation of an insulin peptide to insulin-specific, Qa-1b-restricted CTL isolated from TCR transgenic mice. However, tapasin deficiency significantly impaired the positive selection of these insulin-specific, Qa-1b-restricted transgenic CD8+ T cells. These findings reveal that tapasin plays a differential role in the loading of Qdm and insulin peptides onto Qa-1b molecules, and that tapasin is dispensable for retention of empty Qa-1b molecules in the endoplasmic reticulum, and are consistent with the proposed peptide-editing function of tapasin.
MHC I类分子与肽段的装载涉及多种辅助蛋白,包括TAP相关糖蛋白(塔帕辛),它将空载的MHC I类分子拴系到TAP肽转运体上。我们评估了塔帕辛在肽段与Ib类分子Qa-1b组装过程中的作用。在正常细胞中,Qa-1b主要与一种来自Ia类分子信号序列的肽段Qa-1决定簇修饰物(Qdm)结合。我们的结果表明,塔帕辛将Qa-1b与TAP肽转运体相连,并且塔帕辛促进Qa-1b分子向细胞表面的转运。将内源性Qdm肽段呈递给Qdm特异性、Qa-1b限制性CTLs也需要塔帕辛。与之形成鲜明对比的是,对于将胰岛素肽呈递给从TCR转基因小鼠分离出的胰岛素特异性、Qa-1b限制性CTLs而言,塔帕辛的表达是可有可无的。然而,塔帕辛缺陷显著损害了这些胰岛素特异性、Qa-1b限制性转基因CD8+T细胞的阳性选择。这些发现揭示,塔帕辛在将Qdm和胰岛素肽段装载到Qa-1b分子上发挥着不同作用,并且塔帕辛对于空载Qa-1b分子在内质网中的保留是可有可无的,这与所提出的塔帕辛的肽段编辑功能是一致的。