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A complex of the ubiquitin ligase TRIM32 and the deubiquitinase USP7 balances the level of c-Myc ubiquitination and thereby determines neural stem cell fate specification

机译:泛素连接酶Trig32的复合物和脱硫酶USP7平衡C-MYC泛素水平,从而确定神经干细胞命运规格

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The balance between stem cell maintenance and differentiation has been proposed to depend on antagonizing ubiquitination and deubiquitination reactions of key stem cell transcription factors (SCTFs) mediated by pairs of E3 ubiquitin ligases and deubiquitinating enzymes. Accordingly, increased ubiquitination results in proteasomal degradation of the SCTF, thereby inducing cellular differentiation, whereas increased deubiquitination stabilizes the SCTF, leading to maintenance of the stem cell fate. In neural stem cells, one of the key SCTFs is c-Myc. Previously, it has been shown that c-Myc is ubiquitinated by the E3 ligase TRIM32, thereby targeting c-Myc for proteasomal degradation and inducing neuronal differentiation. Accordingly, TRIM32 becomes upregulated during adult neurogenesis. This upregulation is accompanied by subcellular translocation of TRIM32 from the cytoplasm of neuroblasts to the nucleus of neurons. However, we observed that a subpopulation of proliferative type C cells already contains nuclear TRIM32. As these cells do not undergo neuronal differentiation, despite containing TRIM32 in the nucleus, where it can ubiquitinate c-Myc, we hypothesize that antagonizing factors, specifically deubiquitinating enzymes, are present in these particular cells. Here we show that TRIM32 associates with the deubiquitination enzyme USP7, which previously has been implicated in neural stem cell maintenance. USP7 and TRIM32 were found to exhibit a dynamic and partially overlapping expression pattern during neuronal differentiation both in vitro and in vivo. Most importantly, we are able to demonstrate that USP7 deubiquitinates and thereby stabilizes c-Myc and that this function is required to maintain neural stem cell fate. Accordingly, we propose the balanced ubiquitination and deubiquitination of c-Myc by TRIM32 and USP7 as a novel mechanism for stem cell fate determination.
机译:已经提出了干细胞维持和分化之间的平衡,取决于通过对泛素连接酶和脱氮酶对介导的关键干细胞转录因子(SCTF)的抗衡泛素化和脱氮反应。因此,增加了泛素化导致SCTF的蛋白酶体降解,从而诱导细胞分化,而增加的脱水率稳定SCTF,导致干细胞命运的维持。在神经干细胞中,关键的SCTFS是C-Myc。以前,已经表明,C-MYC被E3连接酶TRIM32染色,从而靶向C-MYC进行蛋白酶体降解并诱导神经元分化。因此,在成人神经发生期间,TRIM32变得上调。该上调伴随着从神经细胞的细胞质到神经元细胞核的细胞质易分析。然而,我们观察到增殖型C细胞的亚群已经含有核饰面32。由于这些细胞不经历神经元分化,尽管核心含有Trim32,其可以遍历C-myc,我们假设拮抗因子,特别是脱氮酶存在于这些特定细胞中。在这里,我们表明Trim32与脱氮酶USP7相关联,其先前已经涉及神经干细胞维持。发现USP7和TRIM32在体外和体内在神经元分化期间表现出动态和部分重叠的表达模式。最重要的是,我们能够证明USP7脱水素,从而稳定C-MYC,并且该功能需要维持神经干细胞命运。因此,我们将C-MYC的平衡泛素化和脱氮作为Trim32和USP7作为干细胞命运测定的新机制。

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