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Epigenetic changes play critical role in age-associated dysfunctions of the liver

机译:表观遗传改变在与年龄相关的肝功能异常中起关键作用

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SummaryCCAAT/Enhancer Binding Proteins family proteins are important regulators of liver functions. Here, we show the critical role of C/EBP-mediated chromatin remodeling in the age-associated dysfunctions of the liver and in the maintenance of physiological homeostasis. Because ph-S193 isoform of C/EBP is increased in livers of old mice, we have generated C/EBP-S193D knockin mice, which mimic the ph-S193 isoform of C/EBP. Analyses of these mice showed that the S193D mutation causes chromatin remodeling leading to histological appearance of ‘foci-like’ nodules, which are also observed in livers of old mice. These ‘foci-like’ structures contain K9 trimethylated histone H3, a marker of heterochromatin. The increase of heterochromatin regions in S193D mice correlates with the elevation of S193D-C/EBP-HDAC1 complexes and with dys-regulation of gene expression including epigenetic silencing of cyclin D1 and D2 promoters and the inhibition of liver proliferation. The elimination of C/EBP-HDAC1 complexes in S193D mice by inhibition of HDAC1 corrects chromatin structure and normalizes expression of cyclin D1 and D2. We found that epigenetic dys-regulation is also associated with the elevation of C/EBPβ and with the increase of C/EBP/β heterodimers in S193D mice. The C/EBP/β heterodimers activate transcription of Glut4 and increase the levels of Glut4. As the result, S193D livers have accelerated uptake of glucose and accumulation of glycogen in the liver. Thus, this study demonstrates that the phosphorylation of C/EBP at S193 leads to the appearance of heterochromatin regions, which correlates with the development of age-related dysfunctions of the liver.
机译:总结CCAAT /增强子结合蛋白家族蛋白是肝功能的重要调节剂。在这里,我们显示了C / EBP介导的染色质重塑在与年龄相关的肝功能障碍和维持生理稳态方面的关键作用。由于C / EBP的ph-S193亚型在老小鼠的肝脏中增加,因此我们生成了C / EBP-S193D敲入小鼠,它们模仿了C / EBP的ph-S193亚型。对这些小鼠的分析表明,S193D突变会导致染色质重塑,从而导致“病灶样”结节的组织学出现,这在老年小鼠的肝脏中也观察到。这些“病灶样”结构包含K9三甲基化组蛋白H3(异染色质的标记物)。 S193D小鼠中异染色质区域的增加与S193D-C / EBP-HDAC1复合物的升高以及基因表达失调有关,包括细胞周期蛋白D1和D2启动子的表观遗传沉默以及肝增殖的抑制。通过抑制HDAC1消除S193D小鼠中的C / EBP-HDAC1复合物,可校正染色质结构并使细胞周期蛋白D1和D2的表达正常化。我们发现表观遗传异常调节也与S193D小鼠中C /EBPβ的升高以及C / EBP /β异二聚体的增加有关。 C / EBP /β异二聚体激活Glut4的转录并增加Glut4的水平。结果,S193D肝脏加速了肝脏中葡萄糖的摄取和糖原的积累。因此,这项研究表明,S193处C / EBP的磷酸化导致异染色质区域的出现,这与年龄相关的肝功能障碍的发展有关。

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