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Further investigation of the light chain shifting phenomenon: Light chain replacement through secondary rearrangement induced by lectin stimulation in the hybridoma cell line HB4C5

机译:轻链转移现象的进一步研究:杂交瘤细胞株HB4C5中凝集素刺激引起的继发性重排引起的轻链置换

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摘要

We found that when the hybridoma cell line HB4C5 was stimulated with wheat germ agglutinin (WGA), loss of production of the original λ light chain occurred, followed by production of new light chain, which mirrored the reaction when stimulated with concanavalin A (ConA). We previously reported that the RAG genes are expressed not only in HB4C5 and its ConA-treated variant subclones, but also in the in the parental Namalwa cells, which are known to be in the plasma state. However, the new λ light chains were expressed only in the HB4C5 cells and not in the parental Namalwa cells. Here we found that the RAG genes are expressed in HB4C5 cells after continuous stimulation with WGA. To further investigate the mechanism of this loss of original λ light chain production by stimulation with lectins in HB4C5 cells, which leads to a sIg-negative subpopulation, we analyzed the differences between HB4C5 and Namalwa cells. In this present study, we found that a 70 kDa phosphorylated protein in HB4C5 cells became undetectable after stimulation with lectins (WGA and ConA), and was not detected in Namalwa cells before or after lectin stimulation. It has been believed that the RAG genes and loss of original λ light chain production are required to induce expression of a new λ light chain in the HB4C5 cells. We suggested that the phosphorylated 70 kDa protein in HB4C5 cells play important roles in regulating the production of new λ light chains which is induced by lectins.
机译:我们发现,当用小麦胚芽凝集素(WGA)刺激杂交瘤细胞系HB4C5时,发生了原始λ轻链的生产损失,随后产生了新的轻链,这反映了用伴刀豆球蛋白A(ConA)刺激时的反应。 。我们以前曾报道过,RAG基因不仅在HB4C5及其经ConA处理的变异亚克隆中表达,而且还在亲本的Namalwa细胞(已知处于血浆状态)中表达。然而,新的λ轻链仅在HB4C5细胞中表达,而在亲代Namalwa细胞中不表达。在这里,我们发现WAG连续刺激后,RAG基因在HB4C5细胞中表达。为了进一步研究HB4C5细胞中凝集素刺激导致原始λ轻链产生损失的机制,从而导致sIg阴性亚群,我们分析了HB4C5和Namalwa细胞之间的差异。在本研究中,我们发现在用凝集素(WGA和ConA)刺激后,HB4C5细胞中的70 kDa磷酸化蛋白变得不可检测,在凝集素刺激之前或之后在Namalwa细胞中未检测到。据认为,在HB4C5细胞中诱导新的λ轻链表达需要RAG基因和原始λ轻链产生的损失。我们建议HB4C5细胞中的磷酸化70 kDa蛋白在调节凝集素诱导的新λ轻链的产生中起重要作用。

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