Department of Biology, University of Bari "Aldo Moro", Bari, Italy.
Department of Biosciences, Biotechnologies and Biopharmaceutics, University of Bari "Aldo Moro", Bari, Italy.
Front Immunol. 2022 Aug 9;13:928860. doi: 10.3389/fimmu.2022.928860. eCollection 2022.
The Camelidae species occupy an important immunological niche within the humoral as well as cell mediated immune response. Although recent studies have highlighted that the somatic hypermutation (SHM) shapes the T cell receptor gamma (TRG) and delta (TRD) repertoire in , it is still unclear how γδ T cells use the TRG/TRD receptors and their respective variable V-GAMMA and V-DELTA domains to recognize antigen in an antibody-like fashion. Here we report about 3D structural analyses of the human and dromedary γδ T cell receptor. First, we have estimated the interaction energies at the interface within the human crystallized paired TRG/TRD chains and quantified interaction energies within the same human TRG/TRD chains in complex with the CD1D, an RPI-MH1-LIKE antigen presenting glycoprotein. Then, we used the human TRG/TRD-CD1D complex as template for the 3D structure of the dromedary TRG/TRD-CD1D complex and for guiding the 3D human/dromedary comparative analysis. The choice of mutated TRG alternatively combined with mutated TRD cDNA clones originating from the spleen of one single dromedary was crucial to quantify the strength of the interactions at the protein-protein interface between the paired TRG and TRD V-domains and between the TRG/TRD V-domains and CD1D G-domains. Interacting amino acids located in the V-domain Complementarity Determining Regions (CDR) and Framework Regions (FR) according to the IMGT unique numbering for V-domains were identified. The resulting 3D dromedary TRG V-GAMMA combined with TRD V-DELTA protein complexes allowed to deduce the most stable gamma/delta chains pairings and to propose a candidate CD1D-restricted γδ T cell receptor complex.
骆驼科物种在体液和细胞介导的免疫反应中占据重要的免疫生态位。尽管最近的研究强调了体细胞超突变(SHM)塑造了 T 细胞受体γ(TRG)和δ(TRD)库,但γδ T 细胞如何使用 TRG/TRD 受体及其各自的可变 V-GAMMA 和 V-DELTA 结构域以类似于抗体的方式识别抗原仍不清楚。在这里,我们报告了人类和单峰驼 γδ T 细胞受体的 3D 结构分析。首先,我们估计了人结晶配对 TRG/TRD 链内部界面的相互作用能,并量化了与 CD1D(一种 RPI-MH1-LIKE 抗原呈递糖蛋白)复合的相同人 TRG/TRD 链内的相互作用能。然后,我们使用人 TRG/TRD-CD1D 复合物作为模板,构建了单峰驼 TRG/TRD-CD1D 复合物的 3D 结构,并指导了人/单峰驼的 3D 比较分析。选择来自一只单峰驼脾脏的突变 TRG 与突变 TRD cDNA 克隆的替代组合对于量化配对 TRG 和 TRD V 结构域之间以及 TRG/TRD V 结构域与 CD1D G 结构域之间蛋白质-蛋白质界面相互作用的强度至关重要。根据 IMGT 对 V 结构域的独特编号,确定了位于 V 结构域互补决定区(CDR)和框架区(FR)中的相互作用氨基酸。由此产生的 3D 单峰驼 TRG V-GAMMA 与 TRD V-DELTA 蛋白复合物允许推断出最稳定的γ/δ 链配对,并提出一个候选的 CD1D 限制性 γδ T 细胞受体复合物。