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β-干扰素对γ-干扰素诱导的小鼠巨噬细胞Ia抗原表达的拮抗作用。

Antagonistic effect of interferon-beta on the interferon-gamma-induced expression of Ia antigen in murine macrophages.

作者信息

Ling P D, Warren M K, Vogel S N

出版信息

J Immunol. 1985 Sep;135(3):1857-63.

PMID:3926890
Abstract

The cell surface expression of I region-associated (Ia) antigens by murine and human macrophages has been shown by investigators from a number of laboratories to be induced in a dose-dependent fashion by IFN-gamma, which is free of other lymphokines. The experiments described in this report demonstrate that fibroblast-derived IFN-beta exerts an antagonistic effect on IFN-gamma induced Ia expression in murine macrophages. Simultaneous addition of IFN-beta and IFN-gamma to peritoneal exudate macrophages results in decreased Ia expression when compared with macrophages treated with IFN-gamma only. Different sources of highly purified IFN-beta, as well as a recombinant human IFN-alpha (A/D Bgl; shown previously to be as active as IFN-beta in several other murine systems) acted in a similar antagonistic fashion to IFN-gamma-induced Ia induction. The down-regulation of Ia expression by IFN-beta is dose-dependent over a concentration range up to 100 U/ml. Time-course experiments indicated that for IFN-beta to down-regulate IFN-gamma-induced Ia, it had to be present either before stimulation with IFN-gamma or during the first 24 hr of simultaneous stimulation. Further experiments in which a highly specific antibody against IFN-alpha/beta was added to the cultures confirmed the findings of the time-course experiments. Inhibitors of the arachidonic acid pathway failed to reverse the effect of IFN-beta to reduce Ia antigen expression, which suggests that this inhibition is not prostaglandin mediated. Thus, these findings support a role for type I IFN as naturally occurring substances that negatively regulate the expression of class II molecules.

摘要

多个实验室的研究人员已表明,鼠类和人类巨噬细胞表面I区相关(Ia)抗原的表达可被不含其他淋巴因子的γ干扰素以剂量依赖方式诱导。本报告中描述的实验表明,成纤维细胞衍生的β干扰素对γ干扰素诱导的鼠巨噬细胞Ia表达具有拮抗作用。与仅用γ干扰素处理的巨噬细胞相比,向腹腔渗出液巨噬细胞同时添加β干扰素和γ干扰素会导致Ia表达降低。不同来源的高度纯化的β干扰素,以及重组人α干扰素(A/D Bgl;先前已证明在其他几个鼠类系统中与β干扰素活性相同)对γ干扰素诱导的Ia诱导作用表现出类似的拮抗方式。在高达100 U/ml的浓度范围内,β干扰素对Ia表达的下调呈剂量依赖性。时间进程实验表明,要使β干扰素下调γ干扰素诱导的Ia,它必须在γ干扰素刺激之前或同时刺激的前24小时内存在。在培养物中添加针对α/β干扰素的高度特异性抗体的进一步实验证实了时间进程实验的结果。花生四烯酸途径的抑制剂未能逆转β干扰素降低Ia抗原表达的作用,这表明这种抑制不是由前列腺素介导的。因此,这些发现支持I型干扰素作为天然存在的物质对II类分子表达起负调节作用。

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