Yao Jie, Leng Lin, Sauler Maor, Fu Weiling, Zheng Junsong, Zhang Yi, Du Xin, Yu Xiaoqing, Lee Patty, Bucala Richard
J Clin Invest. 2016 Feb;126(2):732-44. doi: 10.1172/JCI81937. Epub 2016 Jan 11.
The immunoregulatory cytokine macrophage migration inhibitory factor (MIF) is encoded in a functionally polymorphic locus that is linked to the susceptibility of autoimmune and infectious diseases. The MIF promoter contains a 4-nucleotide microsatellite polymorphism (-794 CATT) that repeats 5 to 8 times in the locus, with greater numbers of repeats associated with higher mRNA levels. Because there is no information about the transcriptional regulation of these common alleles, we used oligonucleotide affinity chromatography and liquid chromatography-mass spectrometry to identify nuclear proteins that interact with the -794 CATT5-8 site. An analysis of monocyte nuclear lysates revealed that the transcription factor ICBP90 (also known as UHRF1) is the major protein interacting with the MIF microsatellite. We found that ICBP90 is essential for MIF transcription from monocytes/macrophages, B and T lymphocytes, and synovial fibroblasts, and TLR-induced MIF transcription is regulated in an ICBP90- and -794 CATT5-8 length-dependent manner. Whole-genome transcription analysis of ICBP90 shRNA-treated rheumatoid synoviocytes uncovered a subset of proinflammatory and immune response genes that overlapped with those regulated by MIF shRNA. In addition, the expression levels of ICBP90 and MIF were correlated in joint synovia from patients with rheumatoid arthritis. These findings identify ICBP90 as a key regulator of MIF transcription and provide functional insight into the regulation of the polymorphic MIF locus.
免疫调节细胞因子巨噬细胞移动抑制因子(MIF)由一个功能多态性位点编码,该位点与自身免疫性疾病和感染性疾病的易感性相关。MIF启动子包含一个4核苷酸微卫星多态性(-794 CATT),在该位点重复5至8次,重复次数越多,mRNA水平越高。由于尚无关于这些常见等位基因转录调控的信息,我们使用寡核苷酸亲和色谱法和液相色谱-质谱法来鉴定与-794 CATT5-8位点相互作用的核蛋白。对单核细胞核裂解物的分析表明,转录因子ICBP90(也称为UHRF1)是与MIF微卫星相互作用的主要蛋白。我们发现ICBP90对于单核细胞/巨噬细胞、B和T淋巴细胞以及滑膜成纤维细胞中MIF的转录至关重要,并且TLR诱导的MIF转录以ICBP90和-794 CATT5-8长度依赖性方式受到调节。对ICBP90 shRNA处理的类风湿性滑膜细胞进行的全基因组转录分析揭示了一组促炎和免疫反应基因,这些基因与MIF shRNA调节的基因重叠。此外,类风湿性关节炎患者关节滑膜中ICBP90和MIF的表达水平相关。这些发现确定ICBP90是MIF转录的关键调节因子,并为多态性MIF位点的调控提供了功能见解。