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The exon junction complex senses energetic stress and regulates contractility and cell architecture in cardiac myocytes

机译:外显子连接复合体感知精力充沛的压力并调节心肌细胞的收缩力和细胞结构

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摘要

The exon junction complex (EJC) is the main mechanism by which cells select specific mRNAs for translation into protein. We hypothesized that the EJC is involved in the regulation of gene expression during the stress response in cardiac myocytes, with implications for the failing heart. In cultured rat neonatal myocytes, we examined the cellular distribution of two EJC components eukaryotic translation initiation factor 4A isoform 3 (eIF4A3) and mago nashi homologue (Mago) in response to metabolic stress. There was significant relocalization of eIF4A3 and Mago from the nucleus to cytoplasm following 18 h of hypoxia. Treating myocytes with 50 mM NaN3 for 4 h to mimic the metabolic stress induced by hypoxia also resulted in significant relocalization of eIF4A3 and Mago to the cytoplasm. To examine whether the effects of metabolic stress on the EJC proteins were dependent on the metabolic sensor AMP kinase (AMPK), we treated myocytes with 1 μM dorsomorphin (DM) in combination with NaN3. DM augmented the translocation of Mago and eIF4A3 from the nucleus to the cytoplasm. Knockdown of eIF4A3 resulted in cessation of cell contractility 96 h post-treatment and a significant reduction in the number of intact sarcomeres. Cell area was significantly reduced by both hypoxia and eIF4A3 knockdown, whilst eIF4A3 knockdown also significantly reduced nuclear size. The reduction in nuclear size is unlikely to be related to apoptosis as it was reversed in combination with hypoxia. These data suggest for the first time that eIF4A3 and potentially other EJC members play an important role in the myocyte stress response, cell contractility and morphology.
机译:外显子连接复合体(EJC)是细胞选择特定mRNA转化为蛋白质的主要机制。我们假设EJC在心肌细胞的应激反应过程中参与基因表达的调节,对心脏衰竭表示影响。在培养的大鼠新生肌细胞中,我们检查了两个EJC成分真核翻译起始因子4A亚型3(eIF4A3)和mago nashi同源物(Mago)对代谢应激的响应。缺氧18小时后,eIF4A3和Mago从细胞核到细胞质发生了明显的重新定位。用50 mM NaN3处理心肌细胞4小时以模拟由缺氧引起的代谢应激,也导致eIF4A3和Mago明显重新定位到细胞质。为了检查代谢应激对EJC蛋白的影响是否取决于代谢传感器AMP激酶(AMPK),我们用1μMdorsomorphin(DM)结合NaN3处理了心肌细胞。 DM增强了Mago和eIF4A3从细胞核到细胞质的转运。击倒eIF4A3可以在治疗后96小时停止细胞收缩,并显着减少完整肉瘤的数量。缺氧和eIF4A3敲低均显着减少了细胞面积,而eIF4A3敲低也显着减小了核大小。核大小的减少不太可能与细胞凋亡有关,因为它与缺氧结合被逆转。这些数据首次表明,eIF4A3和可能的其他EJC成员在肌细胞应激反应,细胞收缩性和形态方面起着重要作用。

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