Ludwig Institute for Cancer Research, University of Lausanne, and Department of Oncology, University Hospital of Lausanne, 1009, Lausanne, Switzerland.
Ludwig Institute for Cancer Research, University of Lausanne, and Department of Oncology, University Hospital of Lausanne, 1009, Lausanne, Switzerland; Swiss Institute of Bioinformatics, 1015 Lausanne, Switzerland; Department of Physiology and Biophysics, Weill Cornell Medicine, New York, USA.
J Mol Biol. 2019 Dec 6;431(24):4941-4958. doi: 10.1016/j.jmb.2019.10.019. Epub 2019 Nov 5.
The coreceptor CD8αβ can greatly promote activation of T cells by strengthening T-cell receptor (TCR) binding to cognate peptide-MHC complexes (pMHC) on antigen presenting cells and by bringing p56 to TCR/CD3. Here, we demonstrate that CD8 can also bind to pMHC on the T cell (in cis) and that this inhibits their activation. Using molecular modeling, fluorescence resonance energy transfer experiments on living cells, biochemical and mutational analysis, we show that CD8 binding to pMHC in cis involves a different docking mode and is regulated by posttranslational modifications including a membrane-distal interchain disulfide bond and negatively charged O-linked glycans near positively charged sequences on the CD8β stalk. These modifications distort the stalk, thus favoring CD8 binding to pMHC in cis. Differential binding of CD8 to pMHC in cis or trans is a means to regulate CD8 T-cell responses and provides new translational opportunities.
共受体 CD8αβ 可通过增强 T 细胞受体 (TCR) 与抗原呈递细胞上同源肽-MHC 复合物 (pMHC) 的结合,以及将 p56 带到 TCR/CD3 上来极大地促进 T 细胞的激活。在这里,我们证明 CD8 也可以与 T 细胞上的 pMHC(顺式)结合,这抑制了它们的激活。通过分子建模、活细胞荧光共振能量转移实验、生化和突变分析,我们表明 CD8 与顺式 pMHC 的结合涉及不同的对接模式,并受翻译后修饰调节,包括膜远端的二硫键和 CD8β 柄上带正电荷序列附近的负电荷 O-连接糖。这些修饰使柄扭曲,从而有利于 CD8 与顺式 pMHC 的结合。CD8 顺式或反式与 pMHC 的差异结合是调节 CD8 T 细胞反应的一种手段,并提供了新的转化机会。