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无论Hrd1如何,Sel1l可能通过Atf6-Sel1l信号通路参与神经元谱系和神经元成熟的决定因素。

Sel1l May Contributes to the Determinants of Neuronal Lineage and Neuronal Maturation Regardless of Hrd1 via Atf6-Sel1l Signaling.

作者信息

Saito Ryo, Mimori Seisuke, Okuma Yasunobu, Kawada Koichi

机构信息

Department of Pharmacology, Faculty of Pharmaceutical Sciences, Chiba Institute of Science, 15-8, Shiomi-cho, Choshi, Chiba, 288-0025, Japan.

Department of Pharmaceutical and Life Sciences, Faculty of Pharmacy, Chiba Institute of Science, Choshi, Japan.

出版信息

Neurochem Res. 2023 Jan;48(1):263-272. doi: 10.1007/s11064-022-03750-6. Epub 2022 Sep 8.

Abstract

The endoplasmic reticulum (ER) is the primary site of intracellular quality control involved in the recognition and degradation of unfolded proteins. A variety of stresses, including hypoxia and glucose starvation, can lead to accumulation of unfolded proteins triggering the ER-associated degradation (ERAD) pathway. Suppressor Enhancer Lin12/Notch1 Like (Sel1l) acts as a "gate keeper" in the quality control of de novo synthesized proteins and complexes with the ubiquitin ligase Hrd1 in the ER membrane. We previously demonstrated that ER stress-induced aberrant neural stem cell (NSC) differentiation and inhibited neurite outgrowth. Inhibition of neurite outgrowth was associated with increased Hrd1 expression; however, the contribution of Sel1l remained unclear. To investigate whether ER stress is induced during normal neuronal differentiation, we semi-quantitatively evaluated mRNA expression levels of unfolded protein response (UPR)-related genes in P19 embryonic carcinoma cells undergoing neuronal differentiation in vitro. Stimulation with all-trans retinoic acid (ATRA) for 4 days induced the upregulation of Nestin and several UPR-related genes (Atf6, Xbp1, Chop, Hrd1, and Sel1l), whereas Atf4 and Grp78/Bip were unchanged. Small-interfering RNA (siRNA)-mediated knockdown of Sel1l uncovered that mRNA levels of the neural progenitor marker Math1 (also known as Atoh1) and the neuronal marker Math3 (also known as Atoh3 and NeuroD4) were significantly suppressed at 4 days after ATRA stimulation. Consistent with this result, Sel1l silencing significantly reduced protein levels of immature neuronal marker βIII-tubulin (also known as Tuj-1) at 8 days after induction of neuronal differentiation, whereas synaptogenic factors, such as cell adhesion molecule 1 (CADM1) and SH3 and multiple ankyrin repeat domain protein 3 (Shank3) were accumulated in Sel1l silenced cells. These results indicate that neuronal differentiation triggers ER stress and suggest that Sel1l may facilitate neuronal lineage through the regulation of Math1 and Math3 expression.

摘要

内质网(ER)是细胞内质量控制的主要场所,参与未折叠蛋白的识别和降解。包括缺氧和葡萄糖饥饿在内的多种应激可导致未折叠蛋白积累,从而触发内质网相关降解(ERAD)途径。抑制增强子Lin12/Notch1样蛋白(Sel1l)在新生合成蛋白的质量控制中起“守门人”作用,并与内质网膜中的泛素连接酶Hrd1形成复合物。我们之前证明内质网应激会诱导神经干细胞(NSC)分化异常并抑制神经突生长。神经突生长的抑制与Hrd1表达增加有关;然而,Sel1l的作用仍不清楚。为了研究在正常神经元分化过程中是否会诱导内质网应激,我们半定量评估了体外进行神经元分化的P19胚胎癌细胞中未折叠蛋白反应(UPR)相关基因的mRNA表达水平。用全反式维甲酸(ATRA)刺激4天可诱导巢蛋白(Nestin)和几个UPR相关基因(Atf6、Xbp1、Chop、Hrd1和Sel1l)上调,而Atf4和葡萄糖调节蛋白78/免疫球蛋白重链结合蛋白(Grp78/Bip)则无变化。小干扰RNA(siRNA)介导的Sel1l敲低发现,在ATRA刺激4天后,神经祖细胞标志物Math1(也称为Atoh1)和神经元标志物Math3(也称为Atoh3和NeuroD4)的mRNA水平显著受到抑制。与该结果一致,在诱导神经元分化8天后,Sel1l沉默显著降低了未成熟神经元标志物βIII-微管蛋白(也称为Tuj-1)的蛋白水平,而在Sel1l沉默的细胞中,诸如细胞黏附分子1(CADM1)和SH3及多个锚蛋白重复结构域蛋白3(Shank3)等突触形成因子则积累。这些结果表明神经元分化会触发内质网应激,并提示Sel1l可能通过调节Math1和Math3的表达促进神经元谱系的形成。

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