Laboratory of Clinical and Experimental Immunology, IRCCS Istituto Giannina Gaslini, Genoa, Italy.
Laboratory of Immunology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy.
HLA. 2022 Aug;100(2):107-118. doi: 10.1111/tan.14630. Epub 2022 Jun 9.
Killer immunoglobulin-like receptor (KIR) genes code for a family of inhibitory and activating receptors, finely tuning NK cell function. Numerous studies reported the relevance of KIR allelic polymorphism on KIR expression, ligand affinity, and strength in signal transduction. Although KIR variability, including gene copy number and allelic polymorphism, in combination with HLA class I polymorphism, impacts both KIR expression and NK cell education, only a precise phenotypic analysis can define the size of the different KIR NK cell subsets. In this context, reagents recognizing a limited number of KIRs is essential. In this study, we have characterized the specificity of an anti-KIR mAb termed HP-DM1. Testing its binding to HEK-293T cells transfected with plasmids coding for different KIRs, we demonstrated that HP-DM1 mAb exclusively reacts with KIR2DL1. Using site-directed mutagenesis, we identified the four amino acids relevant for HP-DM1 recognition: M44, S67, R68, and T70. HP-DM1 mAb binds to a conformational epitope including M44, the residue crucial for HLA-C K80 recognition by KIR2DL1. Based on the HP-DM1 epitope characterization, we could extend its reactivity to all KIR2DL1 allotypes identified except for KIR2DL1022 and, most likely, KIR2DL1020, predicting that it does not recognize any other KIR with the only exception of KIR2DS1*013. Moreover, by identifying the residues relevant for HP-DM1 binding, continuously updating of its reactivity will be facilitated.
杀伤细胞免疫球蛋白样受体(KIR)基因编码了一组抑制性和激活性受体,精细地调节 NK 细胞的功能。许多研究报道了 KIR 等位基因多态性对 KIR 表达、配体亲和力和信号转导强度的相关性。尽管 KIR 变异性,包括基因拷贝数和等位基因多态性,与 HLA Ⅰ类多态性相结合,影响 KIR 表达和 NK 细胞的教育,但只有精确的表型分析才能确定不同 KIR-NK 细胞亚群的大小。在这种情况下,识别有限数量 KIR 的试剂是必不可少的。在这项研究中,我们对一种称为 HP-DM1 的抗 KIR mAb 的特异性进行了表征。通过测试其与转染不同 KIR 编码质粒的 HEK-293T 细胞的结合,我们证明了 HP-DM1 mAb 仅与 KIR2DL1 反应。通过定点突变,我们确定了与 HP-DM1 识别相关的四个氨基酸:M44、S67、R68 和 T70。HP-DM1 mAb 结合到一个构象表位,包括 M44,这是 KIR2DL1 识别 HLA-C K80 的关键残基。基于 HP-DM1 表位的特征,我们可以将其反应性扩展到除 KIR2DL1022 之外的所有鉴定的 KIR2DL1 同种型,并且很可能是 KIR2DL1020,预测它不会识别任何其他 KIR,唯一的例外是 KIR2DS1*013。此外,通过确定与 HP-DM1 结合相关的残基,将有助于其反应性的不断更新。