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Novel crosstalk between Vps26a and Nox4 signaling during neurogenesis

机译:神经发生过程中Vps26a和Nox4信号传导之间的新型串扰

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摘要

Despite numerous studies on the molecular switches governing the conversion of stemness to differentiation in embryonic stem cells (ESCs), little is known about the involvement of the retromer complex. Under neural differentiation conditions, Vps26a deficiency (Vps26a-/-) or knockdown suppressed the loss of stemness and subsequent neurogenesis from ESCs or embryonic carcinoma cells, respectively, as evidenced by the long-lasting expression of stemness markers and the slow appearance of neuronal differentiation markers. Interestingly, relatively low reactive oxygen species (ROS) levels were generated during differentiation of Vps26a-/- ESCs, and treatment with an antioxidant or inhibitor of NADPH oxidase (Nox), a family of ROS-generating enzymes, led to restoration of stemness in wild-type cells to the level of Vps26a-/- cells during neurogenesis. Importantly, a novel interaction between Vps26a and Nox4 linked to the activation of ERK1/2 depended highly on ROS levels during neurogenesis, which were strongly suppressed in differentiating Vps26a-/- ESCs. Moreover, inhibition of phosphorylated ERK1/2 (pERK1/2) resulted in decreased ROS and Nox4 levels, indicating the mutual dependency between pERK1/2 and Nox4-derived ROS during neurogenesis. These results suggest that Vps26a regulates stemness by actively cooperating with the Nox4/ROS/ERK1/2 cascade during neurogenesis. Our findings have important implications for understanding the regulation of stemness via crosstalk between the retromer molecule and redox signaling, and may contribute to the development of ESC-based therapeutic strategies for the mass production of target cells.
机译:尽管在控制胚胎干细胞(ESC)中干性向分化转化的分子转换方面进行了大量研究,但对逆转录复合物的参与了解甚少。在神经分化条件下,Vps26a缺乏症(Vps26a -/-)或敲低分别抑制了ESC或胚胎癌细胞的干性丧失和随后的神经发生,这通过干性标记物的长期表达得以证明。和神经元分化标志物的缓慢出现。有趣的是,在分化Vps26a -/- ESC并用抗氧化剂或NADPH氧化酶抑制剂(Nox)(一种ROS产生酶的家族)处理期间,产生了相对较低的活性氧(ROS)水平。导致神经元发生过程中野生型细胞的干性恢复到Vps26a -/-细胞的水平。重要的是,与ERK1 / 2激活相关的Vps26a和Nox4之间的新型相互作用高度依赖于神经发生过程中的ROS水平,而在区分Vps26a -/- ESC时强烈抑制了ROS水平。此外,抑制磷酸化ERK1 / 2(pERK1 / 2)导致ROS和Nox4水平降低,表明在神经发生过程中pERK1 / 2与Nox4衍生的ROS之间存在相互依赖性。这些结果表明,Vps26a通过在神经发生过程中主动与Nox4 / ROS / ERK1 / 2级联反应来调节干细胞。我们的发现对于理解通过后体分子和氧化还原信号之间的串扰来调节干性的调控具有重要意义,并且可能有助于开发基于ESC的大规模生产靶细胞的治疗策略。

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