Department of Biotechnology, Savitribai Phule Pune University (Former Pune University), Ganeshkhind Road, Pune, Maharashtra 411007, India.
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
Biofactors. 2018 May;44(3):224-236. doi: 10.1002/biof.1413. Epub 2018 Feb 7.
Cellular stress like ER and oxidative stress are the principle causative agents of various proteinopathies. Multifunctional protein PARK7/DJ-1 provides protection against cellular stress. Recently, insulin/IGF also has emerged as a neuro-protective molecule. However, it is not known whether DJ-1 and insulin/IGF complement each other for cellular protection in response to stress. In this study, we show for the first time, that in human and mouse neuronal cell lines, down regulation of DJ-1 for 48 h leads to compensatory upregulation of insulin/IGF signaling (IIS) pathway genes, namely, insulin receptor, insulin receptor substrate, and Akt under normal physiological conditions as well as in cellular stress conditions. Moreover, upon exogenous supply of insulin there is a marked increase in the IIS components both at gene and protein levels leading to down regulation and inactivation of GSK3β. By immunoprecipitation, it was observed that Sirt3 mediated deacetylation and activation of FoxO3a could not occur under DJ-1 downregulation. Transient DJ-1 downregulation also led to Akt mediated increased phosphorylation and nuclear exclusion of FoxO3a. When DJ-1 was downregulated increased interaction of Sirt3 with IRS2 was observed leading to its activation resulting in IIS upregulation. Thus, transient downregulation of DJ-1 leads to stimulation of IIS pathway by Sirt3 mediated IRS2 activation. Consequently, antiapoptotic program is triggered in neuronal cells via Akt-GSK3β-FoxO3a axis. © 2018 BioFactors, 44(3):224-236, 2018.
细胞应激,如内质网应激和氧化应激,是各种蛋白构象病的主要致病因素。多功能蛋白 PARK7/DJ-1 提供了对细胞应激的保护。最近,胰岛素/IGF 也作为一种神经保护分子出现。然而,目前尚不清楚 DJ-1 和胰岛素/IGF 是否在应激反应中相互补充以提供细胞保护。在本研究中,我们首次表明,在人源和鼠源神经元细胞系中,下调 DJ-1 48 小时会导致胰岛素/IGF 信号通路基因(即胰岛素受体、胰岛素受体底物和 Akt)在正常生理条件下以及在细胞应激条件下的代偿性上调。此外,在外源胰岛素供应下,IIS 成分在基因和蛋白水平上均显著增加,导致 GSK3β 的下调和失活。通过免疫沉淀,观察到在 DJ-1 下调时,Sirt3 介导的 FoxO3a 去乙酰化和激活不能发生。瞬时 DJ-1 下调也导致 Akt 介导的 FoxO3a 的磷酸化和核转位增加。当 DJ-1 下调时,观察到 Sirt3 与 IRS2 之间的相互作用增加,导致其激活,从而导致 IIS 上调。因此,DJ-1 的瞬时下调通过 Sirt3 介导的 IRS2 激活刺激 IIS 途径。因此,通过 Akt-GSK3β-FoxO3a 轴,神经元细胞中触发了抗凋亡程序。