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源自牛-鼠杂交瘤的单克隆牛免疫球蛋白G1、G2和M的制备与特性分析

Production and characterization of monoclonal bovine immunoglobulins G1, G2 and M from bovine x murine hybridomas.

作者信息

Srikumaran S, Guidry A J, Goldsby R A

出版信息

Vet Immunol Immunopathol. 1984 Mar;5(4):323-42. doi: 10.1016/0165-2427(84)90002-3.

Abstract

Three bovine x murine hybridomas, which secrete bovine IgG1, IgG2 and IgM, respectively, were derived by the fusion of normal bovine B lymphocytes to the murine cell line SP-2/0. The hybridomas were initially selected by testing the culture supernatant of individual clones with rabbit anti-bovine light chain antibody. The bovine nature of Ig secreted by the bovine x murine hybridomas was confirmed by the ability of bovine serum but not murine serum to inhibit specific adsorption by murine anti-bovine Ig coupled to Sepharose 4B and the inability of sheep anti-mouse Ig (all isotypes) to bind biosynthetically labelled Ig from the respective bovine x murine hybridomas or to react with bovine x murine hybridoma Ig in Ouchterlony analysis. The isotype of the bovine Ig produced by each hybridoma was determined by cRIA using bovine Ig isotype-specific murine mcab, Ouchterlony analysis with guinea pig anti-bovine Ig isotypes and molecular weight analysis of unreduced and reduced affinity purified Ig from the respective bovine x murine hybridomas. Even though the hybridomas in this study showed chromosome loss, they have continued to secrete bovine Ig in culture for over 16 months, indicating that it is possible to isolate and stabilize interspecific hybridomas retaining the chromosome, or at least the genes, encoding an Ig. These hybridomas will provide monoclonal bovine Ig for; 1) serological standards, 2) production of polyclonal and monoclonal antisera to bovine Ig isotypes, 3) sequencing studies, 4) serological and structural studies of bovine Ig classes and subclasses, and messenger RNA for the production of cDNA probes for the cloning of bovine Ig genes and for determining the organization of Ig genes in the bovine genome.

摘要

通过将正常牛B淋巴细胞与小鼠细胞系SP-2/0融合,获得了三种分别分泌牛IgG1、IgG2和IgM的牛×小鼠杂交瘤。最初通过用兔抗牛轻链抗体检测单个克隆的培养上清液来筛选杂交瘤。牛血清而非小鼠血清能够抑制与琼脂糖4B偶联的鼠抗牛Ig的特异性吸附,以及羊抗小鼠Ig(所有同种型)不能结合来自相应牛×小鼠杂交瘤的生物合成标记Ig或在免疫双扩散分析中与牛×小鼠杂交瘤Ig发生反应,从而证实了牛×小鼠杂交瘤分泌的Ig的牛源性。使用牛Ig同种型特异性鼠单克隆抗体通过竞争性放射免疫分析、用豚鼠抗牛Ig同种型进行免疫双扩散分析以及对来自相应牛×小鼠杂交瘤的未还原和还原的亲和纯化Ig进行分子量分析,确定了每个杂交瘤产生的牛Ig的同种型。尽管本研究中的杂交瘤显示出染色体丢失,但它们在培养中持续分泌牛Ig超过16个月,这表明有可能分离并稳定保留编码Ig的染色体或至少基因的种间杂交瘤。这些杂交瘤将提供单克隆牛Ig用于:1)血清学标准;2)生产针对牛Ig同种型的多克隆和单克隆抗血清;3)测序研究;4)牛Ig类和亚类的血清学和结构研究,以及用于生产cDNA探针以克隆牛Ig基因和确定牛基因组中Ig基因组织的信使RNA。

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