Devine Lesley, Rogozinski Linda, Naidenko Olga V, Cheroutre Hilde, Kavathas Paula B
Department of Laboratory Medicine and Section of Immunobiology, Yale University School of Medicine, New Haven, CT 06520, USA.
J Immunol. 2002 Apr 15;168(8):3881-6. doi: 10.4049/jimmunol.168.8.3881.
The murine CD8 glycoprotein interacts with both classical MHC class I molecules and some nonclassical molecules, including the thymic leukemia Ag (TL). TL binds preferentially to CD8alphaalpha homodimers with a 10-fold higher affinity than H-2K(b) class I molecules. To understand the molecular basis for this difference, we created a panel of CD8alpha mutants and tested the ability of the CD8alphaalpha homodimers to bind to H-2K(b) tetramers and TL tetramers. Mutations in three CD8 residues located on the complementarity-determining region-like loops contacting the negatively charged loop in the alpha3 domain of MHC class I greatly reduced binding to both tetramers. Because TL and H-2K(b) class I sequences are highly conserved in the alpha3 domain of MHC class I, this suggests that CD8 contacts the alpha3 domain of TL and H-2K(b) in a similar manner. In contrast, mutations in residues on the A and B beta strands of CD8 that are involved in contact with beta(2)-microglobulin affected interaction with the H-2K(b) tetramer, but not the TL tetramer. Therefore, the orientation of interaction of TL with CD8 appears to be different from that of H-2K(b). The unique high affinity binding of TL with CD8alphaalpha is most likely a result of amino acid differences in the alpha3 domain between TL and H-2K(b), particularly at positions 198 (K to D) and 228 (M to T), which are contact residues in the CD8alphaalpha-H-2K(b) cocrystal.
小鼠CD8糖蛋白与经典的MHC I类分子以及一些非经典分子相互作用,包括胸腺白血病抗原(TL)。TL优先与CD8αα同二聚体结合,其亲和力比H-2K(b) I类分子高10倍。为了解这种差异的分子基础,我们构建了一组CD8α突变体,并测试了CD8αα同二聚体与H-2K(b)四聚体和TL四聚体结合的能力。位于与MHC I类α3结构域中带负电荷环接触的互补决定区样环上的三个CD8残基发生突变,大大降低了与两种四聚体的结合。由于TL和H-2K(b) I类序列在MHC I类α3结构域中高度保守,这表明CD8以类似方式接触TL和H-2K(b)的α3结构域。相比之下,参与与β2-微球蛋白接触的CD8的A和Bβ链上残基的突变影响了与H-2K(b)四聚体的相互作用,但不影响与TL四聚体的相互作用。因此,TL与CD8相互作用的方向似乎与H-2K(b)不同。TL与CD8αα独特的高亲和力结合很可能是由于TL和H-2K(b)在α3结构域中的氨基酸差异,特别是在198位(K到D)和228位(M到T),这两个位置是CD8αα-H-2K(b)共晶体中的接触残基。