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抗II类抗体可增强经前列腺素E2和干扰素-γ处理的脂多糖刺激的B淋巴细胞产生IgG2a。

Anti-class II antibodies potentiate IgG2a production by lipopolysaccharide-stimulated B lymphocytes treated with prostaglandin E2 and IFN-gamma.

作者信息

Stein S H, Phipps R P

机构信息

Department of Periodontics, Medical College of Georgia, Augusta 30912-1220.

出版信息

J Immunol. 1992 Jun 15;148(12):3943-9.

PMID:1318336
Abstract

IFN-gamma secretion by Th1 cells has been shown to preferentially promote the production of IgG2a in LPS-stimulated murine B lymphocytes. We recently reported that PGE2 potentiated the ability of IFN-gamma to augment IgG2a production in both Ag-specific and polyclonal systems via a cAMP-dependent pathway. Because antibodies (Ab) directed against class II MHC molecules have been shown to induce a rise in B cell cAMP, we hypothesized that this event, like PGE2 treatment, would promote the production of IgG2a. In this manuscript, cultures of small and large B cells treated with anti-Ia Ab are shown to produce significantly higher levels of IgG2a, compared with cultures treated only with IFN-gamma and LPS. Moreover, the combined treatment of B lymphocytes with IFN-gamma and PGE2 followed by anti-Ia and LPS resulted in a fourfold rise in IgG2a levels compared with IFN-gamma and LPS. Only anti-class II, but not anti-class I Ab, stimulated IgG2a production. Utilizing an ELISA spot assay, the frequency of IgG2a-secreting B cells was determined to be elevated fourfold in anti-Ia treated B cells. B cell cultures incubated with either PGE2 or anti-Ia exhibited elevated levels of cAMP and treatment with IFN-gamma primed these lymphocytes to the cAMP-elevating effects of either PGE2 or anti-Ia. Finally, RpcAMP, a cAMP antagonist that blocks cAMP from activating protein kinase A, prevented the increased production of IgG2a induced by anti-Ia Ab. These results support the theory that a cAMP pathway exists that promotes B cell IgG2a production. Within this pathway, IFN-gamma sensitizes B lymphocytes to cAMP elevators such as anti-class II Ab, and in conjunction with LPS, causes an increase in the frequency of IgG2a-secreting cells and the amount of IgG2a produced. These observations suggest that, after exposure to viral Ag in vivo, interaction between IFN-gamma-primed murine B cells and T cells will potentiate production of IgG2a, the predominant murine anti-viral Ig.

摘要

已表明Th1细胞分泌的IFN-γ优先促进LPS刺激的小鼠B淋巴细胞产生IgG2a。我们最近报道,PGE2通过cAMP依赖性途径增强了IFN-γ在抗原特异性和多克隆系统中增加IgG2a产生的能力。由于已表明针对II类MHC分子的抗体(Ab)可诱导B细胞cAMP升高,我们推测这一事件,与PGE2处理一样,会促进IgG2a的产生。在本手稿中,与仅用IFN-γ和LPS处理的培养物相比,用抗Ia Ab处理的小B细胞和大B细胞培养物显示产生显著更高水平的IgG2a。此外,IFN-γ和PGE2联合处理B淋巴细胞,然后用抗Ia和LPS处理,与IFN-γ和LPS相比,IgG2a水平提高了四倍。只有抗II类抗体,而不是抗I类抗体,刺激了IgG2a的产生。利用ELISA斑点试验,确定在用抗Ia处理的B细胞中分泌IgG2a的B细胞频率提高了四倍。用PGE2或抗Ia孵育的B细胞培养物表现出cAMP水平升高,用IFN-γ处理使这些淋巴细胞对PGE2或抗Ia的cAMP升高作用敏感。最后,RpcAMP是一种cAMP拮抗剂,可阻止cAMP激活蛋白激酶A,它可防止抗Ia Ab诱导的IgG2a产生增加。这些结果支持这样一种理论,即存在一条促进B细胞产生IgG2a的cAMP途径。在这条途径中,IFN-γ使B淋巴细胞对cAMP升高剂(如抗II类抗体)敏感,并与LPS一起,导致分泌IgG2a的细胞频率增加以及产生的IgG2a量增加。这些观察结果表明,在体内暴露于病毒抗原后,IFN-γ预处理的小鼠B细胞与T细胞之间的相互作用将增强IgG2a的产生,IgG2a是主要的小鼠抗病毒Ig。

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