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MAST1 modulates neuronal differentiation and cell cycle exit via P27 in neuroblastoma cells

机译:Mast1通过神经母细胞瘤细胞中的p27调节神经元分化和细胞周期出口

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Although 19p13.13 microdeletion syndrome has been consistently associated with intellectual disability, overgrowth, and macrocephaly, the underlying mechanisms remain unclear. MAST1, a member of the microtubule‐associated serine/threonine kinase family, has been suggested as a potential candidate gene responsible for neurologic abnormalities in 19p13.13 microdeletion syndrome, but its role in nervous system development remains to be elucidated. Here, we investigated how MAST1 contributes to neuronal development. We report that MAST1 is upregulated during neuronal differentiation of the human neuroblastoma cell line, SH‐SY5Y. Inhibition of MAST1 expression by RNA interference attenuated neuronal differentiation of SH‐SY5Y cells. Cell cycle analyses revealed that MAST1‐depleted cells did not undergo cell cycle arrest after RA treatment. Consistent with this observation, the number of EdU‐positive cells significantly increased in MAST1 knockdown cells. Intriguingly, levels of P27, a cyclin‐dependent kinase inhibitor, were also increased during neuronal differentiation, and MAST1 knockdown reduced the expression of P27. Moreover, reduced neuronal differentiation caused by MAST1 depletion was rescued partially by P27 overexpression in SH‐SY5Y cells. Collectively, these results suggest that MAST1 influences nervous system development by affecting neuronal differentiation through P27.
机译:虽然19P13.13微缺综合征一直与智力障碍,过度生长和古代疫苗相关,但潜在的机制仍然不明确。 Mast1是微管相关的丝氨酸/苏氨酸激酶家族的成员,已被提出作为19p13.13微缺综合征中神经系统异常的潜在候选基因,但其在神经系统开发中的作用仍有待阐明。在这里,我们调查了MAST1如何为神经元发展做出有助于贡献。我们认为MAST1在人神经母细胞瘤细胞系的神经细胞分化期间是上调的,SH-SY5Y。 RNA干扰抑制MAST1表达的抑制SH-SY5Y细胞的神经分子分化。细胞循环分析显示,在RA处理后,乳腺素1耗尽的细胞没有经历细胞周期停滞。与该观察结果一致,在MAST1敲低细胞中,EDU阳性细胞的数量显着增加。在神经细分期间,令人着迷的,P27,细胞周期蛋白依赖性激酶抑制剂的水平,并且MAST1敲低的降低了P27的表达。此外,通过SH-SY5Y细胞中的P27过表达部分地振荡由MAST1耗尽引起的显神经元分化。总的来说,这些结果表明,Mast1通过影响通过P27的神经元分化来影响神经系统的发展。

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