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p53 Interaction with JMJD3 Results in Its Nuclear Distribution during Mouse Neural Stem Cell Differentiation

机译:p53与JMJD3相互作用导致其在小鼠神经干细胞分化过程中的核分布

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摘要

Conserved elements of apoptosis are also integral components of cellular differentiation. In this regard, p53 is involved in neurogenesis, being required for neurite outgrowth in primary neurons and for axonal regeneration in mice. Interestingly, demethylases regulate p53 activity and its interaction with co-activators by acting on non-histone proteins. In addition, the histone H3 lysine 27-specific demethylase JMJD3 induces ARF expression, thereby stabilizing p53 in mouse embryonic fibroblasts. We hypothesized that p53 interacts with key regulators of neurogenesis to redirect stem cells to differentiation, as an alternative to cell death. Specifically, we investigated the potential cross-talk between p53 and JMJD3 during mouse neural stem cell (NSC) differentiation. Our results demonstrated that JMJD3 mRNA and protein levels were increased early in mouse NSC differentiation, when JMJD3 activity was readily detected. Importantly, modulation of JMJD3 in NSCs resulted in changes of total p53 protein, coincident with increased ARF mRNA and protein expression. ChIP analysis revealed that JMJD3 was present at the promoter and exon 1 regions of ARF during neural differentiation, although without changes in H3K27me3. Immunoprecipitation assays demonstrated a direct interaction between p53 and JMJD3, independent of the C-terminal region of JMJD3, and modulation of p53 methylation by JMJD3-demethylase activity. Finally, transfection of mutant JMJD3 showed that the demethylase activity of JMJD3 was crucial in regulating p53 cellular distribution and function. In conclusion, JMJD3 induces p53 stabilization in mouse NSCs through ARF-dependent mechanisms, directly interacts with p53 and, importantly, causes nuclear accumulation of p53. This suggests that JMJD3 and p53 act in a common pathway during neurogenesis.
机译:凋亡的保守元件也是细胞分化的组成部分。在这方面,p53参与神经发生,是初级神经元神经突向外生长和小鼠轴突再生所必需的。有趣的是,脱甲基酶通过作用于非组蛋白来调节p53活性及其与共激活因子的相互作用。此外,组蛋白H3赖氨酸27特异性脱甲基酶JMJD3诱导ARF表达,从而稳定小鼠胚胎成纤维细胞中的p53。我们假设p53与神经发生的关键调节因子相互作用,以使干细胞重新定向分化,从而替代细胞死亡。具体来说,我们调查了小鼠神经干细胞(NSC)分化过程中p53和JMJD3之间的潜在串扰。我们的研究结果表明,在小鼠NSC分化早期,当容易检测到JMJD3活性时,JMJD3 mRNA和蛋白水平增加。重要的是,NSC中JMJD3的调节导致总p53蛋白的变化,与ARF mRNA和蛋白表达的增加相吻合。 ChIP分析显示,JMJD3在神经分化过程中存在于ARF的启动子和外显子1区,尽管H3K27me3没有变化。免疫沉淀分析表明p53和JMJD3之间存在直接相互作用,独立于JMJD3的C端区域,并且通过JMJD3-demethylase活性调节p53甲基化。最后,转染突变体JMJD3显示JMJD3的脱甲基酶活性在调节p53细胞分布和功能中至关重要。总之,JMJD3通过ARF依赖性机制诱导小鼠NSC中的p53稳定,直接与p53相互作用,重要的是引起p53的核积累。这表明JMJD3和p53在神经发生过程中以共同的途径起作用。

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