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首页> 外文期刊>Cell Reports >Tet3-Mediated DNA Demethylation Contributes to the Direct Conversion of Fibroblast to Functional Neuron
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Tet3-Mediated DNA Demethylation Contributes to the Direct Conversion of Fibroblast to Functional Neuron

机译:Tet3介导的DNA去甲基化有助于成纤维细胞直接转化为功能神经元

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摘要

The direct conversion of somatic cells to neurons by bypassing the multipotent cell state may be a powerful approach for personalized medicine. In addition to neuronal transcription factors and multiple small molecules, we find that epigenetic modification also contributes to the direct conversion of fibroblasts to neurons. Here, we show that Tet3, a DNA dioxygenase, can rapidly and efficiently convert fibroblasts directly into functional neurons. The induced neurons (iNs) express pan and mature neuronal markers such as Tuj1, Synapsin, and neuronal nuclei (NeuN). Gene expression profiles demonstrate distinct neuron-specific gene clusters in iNs compared with primary neurons. Induced neurons display maturing firing patterns and form functional synapses. Additionally, we observe that the level of 5hmC in iNs gradually increases during the time course of transdifferentiation. These findings suggest that DNA demethylation may regulate direct lineage commitment, representing an avenue for investigating the process of transdifferentiation.
机译:通过绕过多能细胞状态将体细胞直接转化为神经元可能是个性化医学的强大方法。除了神经元转录因子和多个小分子,我们发现表观遗传修饰也有助于成纤维细胞直接转化为神经元。在这里,我们显示Tet3,一种DNA双加氧酶,可以迅速有效地将成纤维细胞直接转化为功能性神经元。诱导的神经元(iNs)表达泛和成熟的神经元标记物,例如Tuj1,Synapsin和神经元核(NeuN)。与初级神经元相比,基因表达谱显示iNs中不同的神经元特异性基因簇。诱导的神经元显示出成熟的放电模式并形成功能性突触。此外,我们观察到iNs中5hmC的水平在转分化过程中逐渐增加。这些发现表明DNA脱甲基化可能调节直接的血统承诺,代表着调查转分化过程的途径。

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