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MRL-lpr小鼠出现狼疮样疾病和淋巴细胞积聚需要γ干扰素。

Interferon-gamma is required for lupus-like disease and lymphoaccumulation in MRL-lpr mice.

作者信息

Balomenos D, Rumold R, Theofilopoulos A N

机构信息

The Scripps Research Institute, Department of Immunology, La Jolla, California 92037, USA.

出版信息

J Clin Invest. 1998 Jan 15;101(2):364-71. doi: 10.1172/JCI750.

Abstract

Congenic MRL-lpr mice homozygous and heterozygous for the IFN-gamma gene disruption were created to assess the role of this pleotropic cytokine on the lymphoaccumulation and lupus-like disease of Fas-defective mice. Early death was prevented, and glomerulonephritis severely reduced in IFN-gamma-/- mice. Hypergammaglobulinemia was maintained with a switch from IgG2a to IgG1 predominance, but the dramatic decrease in levels of the dominant IgG2a anti-dsDNA autoantibodies was not associated with a compensatory increase in TH2-associated IgG subclasses. Remarkably, early death and glomerulonephritis were also prevented in IFN-gamma+/- mice, although autoantibody levels and glomerular immune deposits were equivalent to IFN-gamma+/+ lpr mice, indicating the importance of additional locally-exerted disease-promoting effects of IFN-gamma. IFN-gamma-/- mice exhibited reduced lymphadenopathy concomitant to a decrease in DN B220(+) T cells. In vivo BrdU labeling showed reduced proliferation of DN B220(+) cells in IFN-gamma-/- vs. IFN-gamma+/+ lpr mice, while enhanced proliferation of all other T cell subsets was unaffected. Macrophages of IFN-gamma-/-lpr mice expressed markedly decreased levels of MHC class I and II molecules compared with controls. Moreover, the heightened expression of MHC class II molecules on proximal tubules of IFN-gamma+/+ lpr mice was significantly reduced in both IFN-gamma-/- and IFN-gamma+/- mice. The data indicate that IFN-gamma hyperproduction is required for lupus development, presumably by increasing MHC expression and autoantigen presentation to otherwise quiescent nontolerant anti-self T cells, and also by promoting local immune and inflammatory processes.

摘要

为了评估这种多效性细胞因子对Fas缺陷小鼠的淋巴细胞积聚和狼疮样疾病的作用,构建了纯合和杂合干扰素-γ基因破坏的同基因MRL-lpr小鼠。干扰素-γ基因敲除小鼠的早期死亡得到预防,肾小球肾炎严重减轻。高球蛋白血症得以维持,且抗体类型从以IgG2a为主转变为以IgG1为主,但占主导地位的IgG2a抗双链DNA自身抗体水平的显著下降与Th2相关IgG亚类的代偿性增加无关。值得注意的是,干扰素-γ杂合小鼠的早期死亡和肾小球肾炎也得到了预防,尽管自身抗体水平和肾小球免疫沉积物与干扰素-γ基因正常的lpr小鼠相当,这表明干扰素-γ额外的局部促病作用的重要性。干扰素-γ基因敲除小鼠的淋巴结病减轻,同时DN B220(+) T细胞减少。体内BrdU标记显示,与干扰素-γ基因正常的lpr小鼠相比,干扰素-γ基因敲除小鼠中DN B220(+)细胞的增殖减少,而所有其他T细胞亚群的增殖增强未受影响。与对照组相比,干扰素-γ基因敲除的lpr小鼠巨噬细胞上MHC I类和II类分子的表达明显降低。此外,在干扰素-γ基因敲除小鼠和干扰素-γ杂合小鼠中,干扰素-γ基因正常的lpr小鼠近端肾小管上MHC II类分子的高表达均显著降低。数据表明,狼疮的发展需要干扰素-γ的过量产生,这可能是通过增加MHC表达和将自身抗原呈递给原本静止的非耐受性抗自身T细胞,以及通过促进局部免疫和炎症过程来实现的。

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