Lankester A C, van Noesel C J, van Schijndel G M, van Lier R A
Department of Clinical Viro-Immunology, Central Laboratory of the Netherlands Red Cross Blood Transfusion Service, Amsterdam.
Immunology. 1993 Sep;80(1):45-50.
Surface expression of membrane(m) IgM molecules requires the association of two disulphide-linked transmembrane (TM) glycoproteins, encoded by the B-cell-specific genes mb-1 and B29. We have shown that mIgM, mIgD and mIgG are associated with structurally related heterodimers on primary human B cells. Transfection studies in murine plasmacytoma cells, however, have demonstrated mb-1-independent expression of both mIgD and mIgG. The recent finding that mIgD is expressed on these cells through glycosyl-phosphatidylinositol (GPI) linkage may be interesting in view of the function of mIgD on primary B cells. We therefore investigated whether GPI linkage serves as an additional mechanism for expression of mIgD and the other mIg isotypes on primary human B cells. However, we were unable to demonstrate the release of mIg molecules upon treatment with phosphatidylinositol-specific phospholipase C (PI-PLC) in either immunofluorescence analysis or Ig heavy (H) chain-specific enzyme-linked immunosorbent assay (ELISA). We conclude that primary human B cells, which constitutively express the mb-1 and B29 genes, do not express the mIg isotypes in a GPI-linked manner.
膜(m)IgM分子的表面表达需要由B细胞特异性基因mb-1和B29编码的两种二硫键连接的跨膜(TM)糖蛋白的结合。我们已经表明,mIgM、mIgD和mIgG与原代人B细胞上结构相关的异二聚体相关联。然而,在鼠浆细胞瘤细胞中的转染研究表明,mIgD和mIgG的表达不依赖于mb-1。鉴于mIgD在原代B细胞上的功能,最近发现mIgD通过糖基磷脂酰肌醇(GPI)连接在这些细胞上表达可能很有趣。因此,我们研究了GPI连接是否作为原代人B细胞上mIgD和其他mIg同种型表达的额外机制。然而,在免疫荧光分析或Ig重链(H)链特异性酶联免疫吸附测定(ELISA)中,我们均未能证明用磷脂酰肌醇特异性磷脂酶C(PI-PLC)处理后mIg分子的释放。我们得出结论,组成性表达mb-1和B29基因的原代人B细胞不以GPI连接的方式表达mIg同种型。