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缺血缺氧诱导培养大鼠星形胶质细胞的表观遗传特征。

Epigenetic Features Induced by Ischemia-Hypoxia in Cultured Rat Astrocytes.

机构信息

Department of Pathology, Key Laboratory for Neurodegenerative Disease of Education Ministry, Capital Medical University, Beijing, 100069, China.

出版信息

Mol Neurobiol. 2016 Jan;53(1):436-445. doi: 10.1007/s12035-014-9027-8. Epub 2014 Dec 3.

Abstract

Epigenetic mechanisms are involved in the maintenance of long-term hypoxia-adapted cellular functions. Astrocytes as the dividing neuroglia cell in the nervous tissue can be activated under hypoxia condition. In the present study, the epigenetic characteristics such as DNA methylation and histone acetylation, as well as S-adenosylmethionine (SAM) role were explored in cultured astrocytes under ischemia-hypoxia (IH) condition. IH could induce the hypermethylation of global DNA and hypoacetylation of histone H3/H4 in an enzyme-dependent manner. c-Jun amino terminal kinase (JNK) signal pathway was involved in this epigenetic change induced by IH. SAM revealed a reverse effect on protein expression without the involvement of methyl donor. On the other hand, neither change of global DNA nor specific gene methylation level was observed in non-dividing neurons under IH condition. In conclusion, a genome-wide adjustment of DNA methylation and histone acetylation under IH conditions should be involved in epigenetic programming of astrocytes. Understanding how ischemia-hypoxia affects global and gene-specific epigenetic programming will provide important insights into the mechanisms of hypoxia-induced cellular changes.

摘要

表观遗传机制参与维持长期缺氧适应的细胞功能。星形胶质细胞作为神经组织中的分裂神经胶质细胞,在缺氧条件下可以被激活。在本研究中,探讨了培养的星形胶质细胞在缺血缺氧(IH)条件下的表观遗传特征,如 DNA 甲基化和组蛋白乙酰化,以及 S-腺苷甲硫氨酸(SAM)的作用。IH 可以诱导全基因组 DNA 的超甲基化和组蛋白 H3/H4 的低乙酰化,这种变化依赖于酶的作用。c-Jun 氨基末端激酶(JNK)信号通路参与了 IH 诱导的这种表观遗传变化。SAM 对蛋白质表达显示出相反的影响,而不涉及甲基供体。另一方面,在 IH 条件下,非分裂神经元中没有观察到全基因组 DNA 的变化或特定基因的甲基化水平。总之,IH 条件下的 DNA 甲基化和组蛋白乙酰化的全基因组调节可能涉及星形胶质细胞的表观遗传编程。了解缺血缺氧如何影响全基因组和特定基因的表观遗传编程,将为缺氧诱导的细胞变化的机制提供重要的见解。

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