Menier Catherine, Saez Berta, Horejsi Vaclav, Martinozzi Silvia, Krawice-Radanne Irene, Bruel Sylvie, Le Danff Caroline, Reboul Murielle, Hilgert Ivan, Rabreau Michèle, Larrad Mur Luis, Pla Marika, Carosella Edgardo D, Rouas-Freiss Nathalie
Service de Recherches en Hémato-Immunologie, Hôpital Saint-Louis, IUH, Paris, France.
Hum Immunol. 2003 Mar;64(3):315-26. doi: 10.1016/s0198-8859(02)00821-2.
Nonclassical major histocompatibility complex (MHC) class I human leukocyte antigen E (HLA-E) and HLA-G molecules differ from classical ones by specific patterns of transcription, protein expression, and immunotolerant functions. The HLA-G molecule can be expressed as four membrane-bound (HLA-G1 to -G4) and three soluble (HLA-G5 to -G7) proteins upon alternative splicing of its primary transcript. In this study, we describe a new set of monoclonal antibodies (mAbs) called MEM-G/01, -G/04, -G/09, -G/13, MEM-E/02, and -E/06 recognizing HLA-G or HLA-E. The pattern of reactivity of these mAbs were analyzed on transfected cells by flow cytometry, Western blotting, and immunochemistry. MEM-G/09 and -G/13 mAbs react exclusively with native HLA-G1 molecules, as the 87G mAb. MEM-G/01 recognizes (similar to the 4H84 mAb) the denatured HLA-G heavy chain of all isoforms, whereas MEM-G/04 recognizes selectively denatured HLA-G1, -G2, and -G5 isoforms. MEM-E/02 and -E/06 mAbs bind the denatured and cell surface HLA-E molecules, respectively. These mAbs were then used to analyze the expression of HLA-G and HLA-E on freshly isolated cytotrophoblast cells, on the JEG-3 placental tumor cell line, and on cryopreserved and paraffin-embedded serial sections of trophoblast tissue. These new mAbs represent valuable tools to study the expression of HLA-G and HLA-E molecules in cells and tissues under normal and pathologic conditions.
非经典主要组织相容性复合体(MHC)I类人白细胞抗原E(HLA-E)和HLA-G分子在转录、蛋白质表达和免疫耐受功能的特定模式上与经典分子不同。HLA-G分子在其初级转录本发生可变剪接后可表达为四种膜结合蛋白(HLA-G1至-G4)和三种可溶性蛋白(HLA-G5至-G7)。在本研究中,我们描述了一组新的单克隆抗体(mAb),称为MEM-G/01、-G/04、-G/09、-G/13、MEM-E/02和-E/06,它们可识别HLA-G或HLA-E。通过流式细胞术、蛋白质印迹法和免疫化学分析了这些mAb在转染细胞上的反应模式。MEM-G/09和-G/13 mAb与天然HLA-G1分子的反应方式与87G mAb完全相同。MEM-G/01识别(类似于4H84 mAb)所有异构体的变性HLA-G重链,而MEM-G/04选择性识别变性的HLA-G1、-G2和-G5异构体。MEM-E/02和-E/06 mAb分别结合变性的和细胞表面的HLA-E分子。然后使用这些mAb分析新鲜分离的细胞滋养层细胞、JEG-3胎盘肿瘤细胞系以及滋养层组织的冷冻保存和石蜡包埋连续切片上HLA-G和HLA-E的表达。这些新的mAb是研究正常和病理条件下细胞和组织中HLA-G和HLA-E分子表达的有价值工具。