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Role of DNA methyltransferase 3b in neuronal cell differentiation.

机译:DNA甲基转移酶3b在神经元细胞分化中的作用。

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摘要

To elucidate the role of epigenetic reprogramming in cell or tissue-specific differentiation, we explored the role of DNA methyltransferases (Dnmts) in the NGF-induced differentiation of PC12 (pheochromocytoma) cells to neuronal cells. The mRNA and protein levels of de novo methyltransferase Dnmt3b increased whereas those of Dnmt3a and Dnmt1 decreased during NGF-induced neurite outgrowth. Dnmt3b localized in the nucleus as well as in the growing neurites. When the expression of Dnmt3b was inhibited by antisense or siRNA, PC12 cells continued to proliferate and failed to generate neurites. Cells depleted of Dnmt3b were unable to exit cell cycle even after 6 days of NGF treatment. Further, this failure in differentiation correlated with significant attenuation in tyrosine phosphorylation of TrkA (NGF receptor) and reduced expression of neuronal markers, Hu antigen and MAP2. The methyl CpG content of PC12 genome or the methylation status of repetitive elements was not significantly altered after differentiation and was not affected by Dnmt3b depletion. Further, the catalytic site mutant of Dnmt3b was able to induce differentiation in Dnmt3b depleted cells after NGF treatment. The Dnmt3b-mediated differentiation was attributed to its N-terminal domain that recruits histone deacetylase 2 (Hdac2), as demonstrated by (a) impediment of differentiation by the Hdac inhibitors, (b) facilitation of the differentiation process by overexpression of the N-terminal domain of Dnmt3b, (c) higher Hdac activity associated with Dnmt3b after NGF treatment and (d) co-immunoprecipitation and co-sedimentation of Dnmt3b specifically with Hdac2 in a glycerol density gradient. These data indicate a novel role of Dnmt3b in neuronal differentiation.; T-cadherin was one of the target genes of Dnmt3b, which was down-regulated during NGF-induced differentiation. Dnmt3b repressed T-cadherin promoter activity independent of its catalytic domain, which corroborated with the observation that no significant change in T-cadherin promoter DNA methylation upon Dnmt3b depletion as revealed by COBRA, CHIP-CHOP and bisulfite sequencing analysis. Overexpression of T-cadherin inhibited NGF-induced PC12 cell differentiation, which corroborated with its redistribution after NGF treatment. Extensive staining of T-cadherin at axon growth cone and restricted distribution on the plasma membrane was observed after NGF treatment in contrast to concentrated staining at cell-cell contact region in undifferentiated cells. In summary, the present study has demonstrated a key role for Dnmt3b and T-cadherin in the NGF-mediated differentiation of PC12 cells to neuronal cells.
机译:为了阐明表观遗传重编程在细胞或组织特异性分化中的作用,我们探讨了DNA甲基转移酶(Dnmts)在NGF诱导的PC12(嗜铬细胞瘤)细胞向神经元细胞分化中的作用。在NGF诱导的神经突生长过程中,从头甲基转移酶Dnmt3b的mRNA和蛋白水平升高,而Dnmt3a和Dnmt1的mRNA和蛋白水平降低。 Dnmt3b定位在细胞核以及生长的神经突中。当Dnmt3b的表达被反义或siRNA抑制时,PC12细胞继续增殖,无法产生神经突。耗尽Dnmt3b的细胞即使经过NGF处理6天也无法退出细胞周期。此外,这种分化失败与TrkA(NGF受体)的酪氨酸磷酸化的显着减弱和神经元标志物,Hu抗原和MAP2的表达降低有关。分化后,PC12基因组的甲基CpG含量或重复元件的甲基化状态没有显着改变,并且不受Dnmt3b消耗的影响。此外,在NGF处理后,Dnmt3b的催化位点突变体能够在Dnmt3b耗尽的细胞中诱导分化。 Dnmt3b介导的分化归因于其募集组蛋白脱乙酰基酶2(Hdac2)的N末端结构域,这可以通过(a)Hdac抑制剂阻碍分化,(b)通过N-过表达促进分化过程来证明。 Dnmt3b的末端结构域,(c)NGF处理后与Dnmt3b相关的更高的Hdac活性,以及​​(d)Dnmt3b尤其是Hdac2在甘油密度梯度中的共免疫沉淀和共沉淀。这些数据表明Dnmt3b在神经元分化中的新作用。 T-cadherin是Dnmt3b的目标基因之一,在NGF诱导的分化过程中被下调。 Dnmt3b抑制了T-钙粘蛋白启动子的活性,而与其催化结构域无关,这与观察到的发现相符,即通过COBRA,CHIP-CHOP和亚硫酸氢盐测序分析揭示了Dnmt3b耗尽后T-钙粘蛋白启动子DNA甲基化没有明显变化。 T-钙黏着蛋白的过表达抑制了NGF诱导的PC12细胞分化,这与NGF处理后的PC12细胞重新分布有关。与未分化细胞中细胞-细胞接触区的集中染色相反,NGF处理后观察到轴突生长锥处的T-钙黏着蛋白广泛染色和质膜上有限的分布。总而言之,本研究证明了Dnmt3b和T-钙黏着蛋白在NGF介导的PC12细胞向神经元细胞分化中的关键作用。

著录项

  • 作者

    Bai, Shoumei.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Biology Neuroscience.; Biology Cell.; Biology Molecular.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;细胞生物学;分子遗传学;
  • 关键词

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