Giblin P A, Leahy D J, Mennone J, Kavathas P B
Section of Immunobiology, Yale University, New Haven, CT 06520-8035.
Proc Natl Acad Sci U S A. 1994 Mar 1;91(5):1716-20. doi: 10.1073/pnas.91.5.1716.
The CD8 dimer interacts with the alpha 3 domain of major histocompatibility complex class I molecules through two immunoglobulin variable-like domains. In this study a crystal structure-informed mutational analysis has been performed to identify amino acids in the CD8 alpha/alpha homodimer that are likely to be involved in binding to class I. Several key residues are situated on the top face of the dimer within loops analogous to the complementarity-determining regions (CDRs) of immunoglobulin. In addition, other important amino acids are located in the A and B beta-strands on the sides of the dimer. The potential involvement of amino acids on both the top and the side faces of the molecule is consistent with a bivalent model for the interaction between a single CD8 alpha/alpha homodimer and two class I molecules and may have important implications for signal transduction in class I-expressing cells. This study also demonstrates a role for the positive surface potential of CD8 in class I binding and complements previous work demonstrating the importance of a negatively charged loop on the alpha 3 domain of class I for CD8 alpha/alpha-class I interaction. We propose a model whereby residues located on the CDR-like loops of the CD8 homodimer interact with the alpha 3 domain of MHC class I while amino acids on the side of the molecule containing the A and B beta-strands contact the alpha 2 domain of class I.
CD8二聚体通过两个免疫球蛋白可变样结构域与主要组织相容性复合体I类分子的α3结构域相互作用。在本研究中,已进行了基于晶体结构的突变分析,以鉴定CD8α/α同型二聚体中可能参与与I类分子结合的氨基酸。几个关键残基位于二聚体顶面类似于免疫球蛋白互补决定区(CDR)的环内。此外,其他重要氨基酸位于二聚体侧面的A和Bβ链中。分子顶面和侧面的氨基酸可能参与其中,这与单个CD8α/α同型二聚体与两个I类分子之间相互作用的二价模型一致,并且可能对I类表达细胞中的信号转导具有重要意义。本研究还证明了CD8的正表面电位在I类结合中的作用,并补充了先前的工作,该工作证明了I类α3结构域上带负电荷的环对于CD8α/α-I类相互作用的重要性。我们提出了一个模型,即位于CD8同型二聚体的CDR样环上的残基与MHC I类的α3结构域相互作用,而分子侧面包含A和Bβ链的氨基酸则与I类的α2结构域接触。