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IRF5/Blimp-1 轴对小鼠狼疮易感性基因的特异性调控。

Distinct regulation of murine lupus susceptibility genes by the IRF5/Blimp-1 axis.

机构信息

Department of Environmental Health, University of Cincinnati, Cincinnati, OH 45267, USA.

出版信息

J Immunol. 2012 Jan 1;188(1):270-8. doi: 10.4049/jimmunol.1102311. Epub 2011 Nov 23.

Abstract

Genome-wide association studies have identified lupus susceptibility genes such as IRF5 and PRDM1 (encoding for IFN regulatory factor 5 [IRF]5 and Blimp-1) in the human genome. Accordingly, the murine Irf5 and Prdm1 genes have been shown to play a role in lupus susceptibility. However, it remains unclear how IRF5 and Blimp-1 (a transcriptional target of IRF5) contribute to lupus susceptibility. Given that the murine lupus susceptibility locus Nba2 includes the IFN-regulated genes Ifi202 (encoding for the p202 protein), Aim2 (encoding for the Aim2 protein), and Fcgr2b (encoding for the FcγRIIB receptor), we investigated whether the IRF5/Blimp-1 axis could regulate the expression of these genes. We found that an Irf5 deficiency in mice decreased the expression of Blimp-1 and reduced the expression of the Ifi202. However, the deficiency increased the expression of Aim2 and Fcgr2b. Correspondingly, increased expression of IRF5 in cells increased levels of Blimp-1 and p202 protein. Moreover, Blimp-1 expression increased the expression of Ifi202, whereas it reduced the expression of Aim2. Interestingly, an Aim2 deficiency in female mice increased the expression of IRF5. Similarly, the Fcgr2b-deficient mice expressed increased levels of IRF5. Moreover, increased expression of IRF5 and Blimp-1 in lupus-prone C57BL/6.Nba2, New Zealand Black, and C57BL/6.Sle123 female mice (as compared with age-matched C57BL/6 female mice) was associated with increased levels of the p202 protein. Taken together, our observations demonstrate that the IRF5/Blimp-1 axis differentially regulates the expression of Nba2 lupus susceptibility genes, and they suggest an important role for the IRF5/Blimp-1/p202 axis in murine lupus susceptibility.

摘要

全基因组关联研究已经在人类基因组中鉴定出狼疮易感基因,如 IRF5 和 PRDM1(编码 IFN 调节因子 5 [IRF]5 和 Blimp-1)。相应地,已经表明小鼠 Irf5 和 Prdm1 基因在狼疮易感性中起作用。然而,IRF5 和 Blimp-1(IRF5 的转录靶标)如何导致狼疮易感性仍然不清楚。鉴于小鼠狼疮易感基因座 Nba2 包括 IFN 调节基因 Ifi202(编码 p202 蛋白)、Aim2(编码 Aim2 蛋白)和 Fcgr2b(编码 FcγRIIB 受体),我们研究了 IRF5/Blimp-1 轴是否可以调节这些基因的表达。我们发现,小鼠中的 Irf5 缺乏会降低 Blimp-1 的表达并减少 Ifi202 的表达。然而,缺乏会增加 Aim2 和 Fcgr2b 的表达。相应地,细胞中 IRF5 的表达增加会增加 Blimp-1 和 p202 蛋白的水平。此外,Blimp-1 的表达增加了 Ifi202 的表达,而降低了 Aim2 的表达。有趣的是,雌性小鼠中的 Aim2 缺乏会增加 IRF5 的表达。同样,Fcgr2b 缺陷型小鼠表达增加的 IRF5。此外,狼疮易感 C57BL/6.Nba2、新西兰黑和 C57BL/6.Sle123 雌性小鼠(与年龄匹配的 C57BL/6 雌性小鼠相比)中 IRF5 和 Blimp-1 的表达增加与 p202 蛋白水平增加相关。总之,我们的观察结果表明,IRF5/Blimp-1 轴差异调节 Nba2 狼疮易感基因的表达,并表明 IRF5/Blimp-1/p202 轴在小鼠狼疮易感性中起重要作用。

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