Quilliam A L, Osman N, McKenzie I F, Hogarth P M
Helen M. Schutt Laboratory for Immunology, Austin Research Institute, Heidelberg, Victoria, Australia.
Immunology. 1993 Mar;78(3):358-63.
The biochemical analysis of murine Fc gamma RI has been difficult because this receptor is co-expressed with other Fc receptors on the cell surface of myeloid cells and all precipitate together with immune complexes. To overcome this problem and to study cells which expressed Fc gamma RI and only this Fc receptor, stable transfection of Chinese hamster ovary (CHO) cells (Fc gamma RI-) with Fc gamma RI cDNA was performed thereby permitting biochemical characterization of Fc gamma RI in isolation from other Fc receptors. Studies of Fc gamma RI+CHO cells showed the mature Fc gamma RI to be a 70,000 MW single-chain receptor on the cell surface. The 70,000 MW molecule was also identified on the Fc gamma RI+ cell lines, J774 (a macrophage-like cell line), and 18.81 (a pre-B-cell line). Fc gamma RI was shown to be N-linked glycosylated and after deglycosylation to have a protein core of 49,000 MW. Fc gamma RI was found to be phosphorylated and after PMA stimulation, the level of phosphorylation was increased; serine residues in the cytoplasmic tail were identified as the phosphate acceptors. Thus, Fc gamma RI can now be definitely characterized as a 70,000 MW phosphoprotein.
对小鼠FcγRI进行生化分析一直很困难,因为该受体与髓样细胞表面的其他Fc受体共同表达,并且都与免疫复合物一起沉淀。为克服这一问题并研究表达FcγRI且仅表达该Fc受体的细胞,用FcγRI cDNA对中国仓鼠卵巢(CHO)细胞(FcγRI-)进行稳定转染,从而能够在与其他Fc受体分离的情况下对FcγRI进行生化特性分析。对FcγRI+CHO细胞的研究表明,成熟的FcγRI是细胞表面一种分子量为70,000的单链受体。在FcγRI+细胞系J774(一种巨噬细胞样细胞系)和18.81(一种前B细胞系)中也鉴定出了分子量为70,000的分子。FcγRI被证明是N-连接糖基化的,去糖基化后有一个分子量为49,000的蛋白核心。FcγRI被发现发生了磷酸化,在PMA刺激后,磷酸化水平增加;细胞质尾巴中的丝氨酸残基被确定为磷酸受体。因此,FcγRI现在可以明确地被表征为一种分子量为70,000的磷蛋白。