Turnquist Heth R, Petersen Jason L, Vargas Shanna E, McIlhaney Mary M, Bedows Elliott, Mayer Werner E, Grandea Andres G, Van Kaer Luc, Solheim Joyce C
Eppley Institute for Research in Cancer and Allied Diseases, Department of Pathology, University of Nebraska Medical Center, Omaha, NE 68198, USA.
J Immunol. 2004 Mar 1;172(5):2976-84. doi: 10.4049/jimmunol.172.5.2976.
Presentation of antigenic peptides to T lymphocytes by MHC class I molecules is regulated by events involving multiple endoplasmic reticulum proteins, including tapasin. By studying the effects of substitutions in the tapasin Ig-like domain, we demonstrated that H-2L(d)/tapasin association can be segregated from reconstitution of folded L(d) surface expression. This finding suggests that peptide acquisition by L(d) is influenced by tapasin functions that are independent of L(d) binding. We also found that the presence of a nine-amino acid region in the Ig-like domain of mouse or human tapasin is required for association with L(d), and certain point substitutions in this sequence abrogate human, but not mouse, tapasin association with L(d). These data are consistent with a higher overall affinity between L(d) and mouse tapasin compared with human tapasin. In addition, we found that other point mutations in the same region of the tapasin Ig-like domain affect MHC class I surface expression and Ag presentation. Finally, we showed that the cysteine residues in the Ig-like domain of tapasin influence tapasin's stability, its interaction with the MHC class I H chain, and its stabilization of TAP. Mutagenesis of these cysteines decreases tapasin's electrophoretic mobility, suggesting that these residues form an intramolecular disulfide bond. Taken together, these results reveal a critical role for the tapasin Ig-like domain in tapasin function.
主要组织相容性复合体(MHC)I类分子将抗原肽呈递给T淋巴细胞的过程受多种内质网蛋白(包括塔帕辛)相关事件的调控。通过研究塔帕辛免疫球蛋白样结构域中替换的影响,我们证明H-2L(d)/塔帕辛的结合可以与折叠后的L(d)表面表达的重建相分离。这一发现表明,L(d)获取肽段受塔帕辛功能的影响,而这些功能与L(d)的结合无关。我们还发现,小鼠或人类塔帕辛的免疫球蛋白样结构域中一个九氨基酸区域的存在是与L(d)结合所必需的,并且该序列中的某些点突变消除了人类而非小鼠塔帕辛与L(d)的结合。这些数据与L(d)和小鼠塔帕辛之间的总体亲和力高于人类塔帕辛一致。此外,我们发现塔帕辛免疫球蛋白样结构域同一区域的其他点突变会影响MHC I类分子的表面表达和抗原呈递。最后,我们表明塔帕辛免疫球蛋白样结构域中的半胱氨酸残基影响塔帕辛的稳定性、其与MHC I类重链的相互作用以及其对抗原加工相关转运体(TAP)的稳定作用。这些半胱氨酸的诱变降低了塔帕辛的电泳迁移率,表明这些残基形成了分子内二硫键。综上所述,这些结果揭示了塔帕辛免疫球蛋白样结构域在塔帕辛功能中的关键作用。