Demethylation in promoter region of severely damaged hepatocytes enhances chemokine receptor CXCR4 gene expression.

IF 2.1 4区 生物学 Q4 CELL BIOLOGY Histochemistry and Cell Biology Pub Date : 2023-11-01 Epub Date: 2023-08-02 DOI:10.1007/s00418-023-02229-x
Chihiro Ito, Ryuma Haraguchi, Kohei Ogawa, Miku Iwata, Riko Kitazawa, Yasutsugu Takada, Sohei Kitazawa
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Abstract

The liver is known to possess remarkable regenerative potential, but persistent inflammation or severe acute injury can lead to liver fibrosis and incomplete regeneration, ultimately resulting in liver failure. Recent studies have shown that the axis of two types of CXCL12 receptors, CXCR4 and CXCR7, plays a crucial role in liver fibrosis and regeneration. The present study aimed to investigate the regulatory factors involved in CXCR4 expression in injured liver. Immunohistochemical screening of liver tissue samples collected during liver transplantation revealed a reciprocal expression pattern between CXCR4 and MeCP2. An in vitro system involving cultured cell lines and H2O2 treatment was established to study the impact of oxidative stress on signaling pathways and epigenetic alterations that affect CXCR4 mRNA expression. Operating through distinct signaling pathways, H2O2 treatment induced a dose-dependent increase in CXCR4 expression in both hepatocyte- and intrahepatic cholangiocyte-derived cells. Treatment of the cells with trichostatin and azacytidine modulated CXCR4 expression in hepatocytes by modifying the methylation status of CpG dinucleotides located in a pair of TA repeats adjacent to the TATA box of the CXCR4 gene promoter. Only MeCP2 bound to oligonucleotides representing the TATA box region when the cytosine residues within the sequence were methylated, as revealed by electrophoretic mobility shift assay (EMSA). Methylation-specific PCR analysis of microdissected samples revealed a correlation between the loss of CpG methylation and the upregulation of CXCR4 in injured hepatocytes, replicating the findings from the in vitro study. Besides the conventional MEK/ERK and NF-κB signaling pathways that activate CXCR4 in intrahepatic cholangiocytes, the unique epigenetic modifications observed in hepatocytes might also contribute to a shift in the CXCR4-CXCR7 balance towards CXCR4, leading to irreversible liver injury and fibrosis. This study highlights the importance of epigenetic modifications in regulating CXCR4 expression in liver injury and fibrosis.

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严重受损肝细胞启动子区的去甲基化增强趋化因子受体CXCR4基因的表达。
众所周知,肝脏具有显著的再生潜力,但持续的炎症或严重的急性损伤会导致肝纤维化和再生不完全,最终导致肝衰竭。最近的研究表明,两种类型的CXCL12受体CXCR4和CXCR7的轴在肝纤维化和再生中起着至关重要的作用。本研究旨在探讨CXCR4在损伤肝脏中表达的调控因素。肝移植过程中收集的肝组织样本的免疫组织化学筛查显示CXCR4和MeCP2之间存在相互表达模式。建立了一个涉及培养细胞系和H2O2处理的体外系统,以研究氧化应激对影响CXCR4mRNA表达的信号通路和表观遗传学改变的影响。H2O2处理通过不同的信号通路诱导肝细胞和肝内胆管细胞来源的细胞中CXCR4表达的剂量依赖性增加。用曲霉菌素和氮杂胞苷处理细胞通过改变位于CXCR4基因启动子的TATA盒附近的一对TA重复序列中的CpG二核苷酸的甲基化状态来调节肝细胞中CXCR4的表达。当序列中的胞嘧啶残基被甲基化时,只有MeCP2与代表TATA盒区的寡核苷酸结合,如电泳迁移率偏移测定(EMSA)所揭示的。对显微切割样品的甲基化特异性PCR分析显示,损伤肝细胞中CpG甲基化的丧失与CXCR4的上调之间存在相关性,这与体外研究的结果相一致。除了激活肝内胆管细胞中CXCR4的传统MEK/ERK和NF-κB信号通路外,在肝细胞中观察到的独特的表观遗传学修饰也可能导致CXCR4-CXCR7平衡向CXCR4转变,导致不可逆的肝损伤和纤维化。这项研究强调了表观遗传学修饰在肝损伤和纤维化中调节CXCR4表达的重要性。
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来源期刊
Histochemistry and Cell Biology
Histochemistry and Cell Biology 生物-细胞生物学
CiteScore
4.90
自引率
8.70%
发文量
112
审稿时长
1 months
期刊介绍: Histochemistry and Cell Biology is devoted to the field of molecular histology and cell biology, publishing original articles dealing with the localization and identification of molecular components, metabolic activities and cell biological aspects of cells and tissues. Coverage extends to the development, application, and/or evaluation of methods and probes that can be used in the entire area of histochemistry and cell biology.
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