首页> 美国卫生研究院文献>International Journal of Molecular Sciences >HLA-G Expression in Human Mesenchymal Stem Cells (MSCs) Is Related to Unique Methylation Pattern in the Proximal Promoter as well as Gene Body DNA
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HLA-G Expression in Human Mesenchymal Stem Cells (MSCs) Is Related to Unique Methylation Pattern in the Proximal Promoter as well as Gene Body DNA

机译:HLA-G在人间充质干细胞(MSC)中的表达与近端启动子的独特甲基化模式有关以及基因体DNA

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摘要

Multipotent human mesenchymal stem cells (MSCs) harbor clinically relevant immunomodulation, and HLA-G, a non-classical MHC class I molecule with highly restricted tissue expression, is one important molecule involved in these processes. Understanding of the natural regulatory mechanisms involved in expression of this elusive molecule has been difficult, with near exclusive reliance on cancer cell lines. We therefore studied the transcriptional control of HLA-G in primary isolated human bone marrow- (BM), human embryonic stem cell-derived (hE-), as well as placenta-derived MSCs (P-MSCs), and found that all 3 types of MSCs express 3 of the 7 HLA-G isoforms at the gene level; however, fibroblasts did not express HLA-G. Protein validation using BM- and P-MSCs demonstrated expression of 2 isoforms including a larger HLA-G-like protein. Interferon-γ (IFN-γ) stimulation upregulated both gene and protein expression in MSCs but not the constitutively expressing JEG-3 cell line. Most interestingly in human MSCs and placental tissue, hypomethylation of CpG islands not only occurs on the HLA-G proximal promoter but also on the gene body as well, a pattern not seen in either of the 2 commonly used choriocarcinoma cell lines which may contribute to the unique HLA-G expression patterns and IFN-γ-responsiveness in MSCs. Our study implicates the importance of using normal cells and tissues for physiologic understanding of tissue-specific transcriptional regulation, and highlight the utility of human MSCs in unraveling the transcriptional regulation of HLA-G for better therapeutic application.
机译:多能人间充质干细胞(MSCs)临床相关的免疫调节和HLA-G,一种具有高度限制组织表达的非典型MHC I类分子,是这些方法中涉及的一个重要分子。理解该难以置保地的表达所涉及的自然调节机制已经困难,近乎依赖于癌细胞系。因此,我们研究了初级分离的人骨髓 - (BM),人胚胎干细胞衍生(HE-)以及胎盘衍生的MSCs(P-MSCs)的转录控制,发现所有3在基因水平的7个HLA-g同种型中表达3种的MSC表达3;然而,成纤维细胞没有表达HLA-g。使用BM-and P-MSC的蛋白质验证证明了2种同种型的表达,包括较大的HLA-G样蛋白。干扰素-γ(IFN-γ)刺激上调了MSCs中的基因和蛋白质表达,但不是组成思考的JEG-3细胞系。最有趣的是在人体MSC和胎盘组织中,CPG岛的低甲基化不仅发生在HLA-G近端启动子上,而且还在基因体上发生,其中2种常用的胆管癌细胞系中的任何一个都没有看到的图案,这可能有助于MSCS中的独特HLA-G表达模式和IFN-γ响应性。我们的研究暗示使用正常细胞和组织对组织特异性转录调节的生理理解的重要性,并突出人体MSCs在解开HLA-G的转录调节以获得更好的治疗应用。

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