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Analysis of neuronal phosphoproteome reveals PINK1 regulation of BAD function and cell death

机译:对神经元磷酸化蛋白质组的分析揭示了PINK1对BAD功能和细胞死亡的调控

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摘要

PINK1 mutations that disrupt its kinase activity cause autosomal recessive early onset Parkinson’s disease (PD). Although research in recent years has elucidated a PINK1-Parkin pathway of mitophagy activation that requires PINK1 kinase activity, mitophagy-independent functions of PINK1 and their possible roles in PD pathogenesis have been proposed. Using an unbiased quantitative mass spectrometry approach to analyze the phosphoproteome in primary neurons from wild type and Pink1 knockout mice after mitochondrial depolarization, we uncovered PINK1-regulated phosphorylation sites, which involve coordinated activation of multiple signaling pathways that control cellular response to stress. We further identified the pro-apoptotic protein BAD as a potential mitochondrial substrate of PINK1 both in vitro and in vivo, and found that cells more susceptible to a12poptosis induced by mitochondrial damage can be rescued by phosphorylation mimic BAD. Our results thus suggest that PINK1 kinase activity is important for pro-apoptotic protein function in regulation of cell death.
机译:破坏其激酶活性的PINK1突变会导致常染色体隐性遗传性帕金森氏病(PD)。尽管近年来的研究阐明了需要PINK1激酶活性的线粒体激活的PINK1-Parkin途径,但已提出PINK1的线粒体非依赖性功能及其在PD发病机理中的可能作用。使用无偏定量质谱方法分析线粒体去极化后野生型和Pink1基因敲除小鼠的初级神经元中的磷酸化蛋白质组,我们发现了PINK1调控的磷酸化位点,该位点涉及控制细胞对应激反应的多个信号传导途径的协同激活。我们进一步鉴定了促凋亡蛋白BAD作为PINK1的潜在线粒体底物,无论是在体内还是体外,都发现更易受线粒体损伤诱导的12细胞凋亡的细胞可以通过磷酸化模拟BAD来拯救。因此,我们的结果表明,PINK1激酶活性对于调节细胞死亡的促凋亡蛋白功能很重要。

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