Deckmyn H, Zhang J, Van Houtte E, Vermylen J
Center for Molecular and Vascular Biology, University of Leuven, Belgium.
Blood. 1994 Sep 15;84(6):1968-74.
Human B-cell lines were derived by limiting dilutions of Epstein-Barr virus (EBV) transformed peripheral B cells from a patient with an autoantibody against glycoprotein (GP)Ia/IIa, and manifesting defective collagen-induced platelet aggregation and a bleeding problem. Antibody-producing clones were selected for their reactivity with whole platelets or with affinity-purified GPIa/IIa by enzyme-linked immunosorbent assay (ELISA). One of these cell lines, selected for further evaluation, produced an IgM (E3G6) that interfered with platelet aggregation responses. Polymerase chain reaction (PCR) amplifications with two different sets of primers specific for human kappa-chains resulted in the rescue of a unique and identical sequence. The same was true for the mu-chain, from which it was concluded that the cell line was monoclonal. Further analysis showed that the kappa variable domain sequence is similar to the germline gene A30, to 2E7, an anti-GPIIb human autoantibody, and to HF2-1/17, a systemic lupus erythematosus (SLE)-associated broad-specificity human autoantibody. Thus, the specificity of our antibody, E3G6, appears to be determined by the mu-chain, the sequence of which is encoded by a VHIII gene segment strongly homologous to the germline gene DP-77, by a D gene that is not homologous to any of the germline D genes reported to date, and by JH4 gene segment that is germline. All four mutations versus DP-77 are in CDRs, and result in amino acid substitutions, which implies that E3G6 may have been derived from an antigen-driven response.
人B细胞系源自对糖蛋白(GP)Ia/IIa具有自身抗体的患者的爱泼斯坦-巴尔病毒(EBV)转化外周血B细胞的有限稀释,并表现出胶原诱导的血小板聚集缺陷和出血问题。通过酶联免疫吸附测定(ELISA)选择与全血小板或亲和纯化的GPIa/IIa反应的产生抗体的克隆。选择其中一个细胞系进行进一步评估,其产生了一种干扰血小板聚集反应的IgM(E3G6)。用两组不同的针对人κ链的特异性引物进行聚合酶链反应(PCR)扩增,得到了一个独特且相同的序列。μ链也是如此,由此得出该细胞系是单克隆的结论。进一步分析表明,κ可变区序列与种系基因A30、抗GPIIb人自身抗体2E7以及系统性红斑狼疮(SLE)相关的广泛特异性人自身抗体HF2-1/17相似。因此,我们的抗体E3G6的特异性似乎由μ链决定,其序列由与种系基因DP-77高度同源的VHIII基因片段、与迄今报道的任何种系D基因都不同源的D基因以及种系JH4基因片段编码。与DP-77相比的所有四个突变都在互补决定区(CDR)中,并导致氨基酸取代,这意味着E3G6可能源自抗原驱动的反应。