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内质网应激诱导的 N2a 神经母细胞瘤细胞的蛋白质组学研究

Proteome-wide study of endoplasmic reticulum stress induced by thapsigargin in N2a neuroblastoma cells.

机构信息

Department of Medical Chemistry, University of Szeged, Dóm tér 8, Szeged H-6720, Hungary.

出版信息

Neurochem Int. 2013 Jan;62(1):58-69. doi: 10.1016/j.neuint.2012.11.003. Epub 2012 Nov 12.

Abstract

Disturbances in intraluminal endoplasmic reticulum (ER) Ca(2+) concentration leads to the accumulation of unfolded proteins and perturbation of intracellular Ca(2+) homeostasis, which has a huge impact on mitochondrial functioning under normal and stress conditions and can trigger cell death. Thapsigargin (TG) is widely used to model cellular ER stress as it is a selective and powerful inhibitor of sarcoplasmic/endoplasmic reticulum Ca(2+) ATPases. Here we provide a representative proteome-wide picture of ER stress induced by TG in N2a neuroblastoma cells. Our proteomics study revealed numerous significant protein expression changes in TG-treated N2a cell lysates analysed by two-dimensional electrophoresis followed by mass spectrometric protein identification. The proteomic signature supports the evidence of increased bioenergetic activity of mitochondria as several mitochondrial enzymes with roles in ATP-production, tricarboxylic acid cycle and other mitochondrial metabolic processes were upregulated. In addition, the upregulation of the main ER resident proteins confirmed the onset of ER stress during TG treatment. It has become widely accepted that metabolic activity of mitochondria is induced in the early phases in ER stress, which can trigger mitochondrial collapse and subsequent cell death. Further investigations of this cellular stress response in different neuronal model systems like N2a cells could help to elucidate several neurodegenerative disorders in which ER stress is implicated.

摘要

细胞内质网 (ER) 腔内钙离子浓度的紊乱会导致未折叠蛋白的积累和细胞内钙离子稳态的紊乱,这对正常和应激条件下的线粒体功能有巨大影响,并可能引发细胞死亡。他普西加林 (TG) 被广泛用于模拟细胞 ER 应激,因为它是肌浆/内质网 Ca2+-ATP 酶的选择性和强大抑制剂。在这里,我们提供了 TG 诱导 N2a 神经母细胞瘤细胞 ER 应激的代表性蛋白质组学全图。我们的蛋白质组学研究通过二维电泳和随后的质谱蛋白质鉴定分析 TG 处理的 N2a 细胞裂解物,揭示了许多显著的蛋白质表达变化。蛋白质组学特征支持线粒体生物能量活性增加的证据,因为几种在线粒体中发挥作用的酶与 ATP 产生、三羧酸循环和其他线粒体代谢过程有关,上调。此外,主要 ER 驻留蛋白的上调证实了在 TG 处理期间 ER 应激的发生。人们普遍接受,在 ER 应激的早期阶段,线粒体的代谢活性被诱导,这可能引发线粒体崩溃和随后的细胞死亡。在不同的神经元模型系统(如 N2a 细胞)中对这种细胞应激反应进行进一步研究,可以帮助阐明几种与 ER 应激有关的神经退行性疾病。

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