Proteomics and lipidomic analysis reveal dysregulated pathways associated with loss of sacsin

D. Galatolo, S. Rocchiccioli, N. Di Giorgi, Flavio Dal Canto, Giovanni Signore, Federica Morani, Elisa Ceccherini, S. Doccini, Filippo M. Santorelli
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Abstract

Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a rare incurable neurodegenerative disease caused by mutations in the SACS gene, which codes for sacsin, a large protein involved in protein homeostasis, mitochondrial function, cytoskeletal dynamics, autophagy, cell adhesion and vesicle trafficking. However, the pathogenic mechanisms underlying sacsin dysfunction are still largely uncharacterized, and so attempts to develop therapies are still in the early stages.To achieve further understanding of how processes are altered by loss of sacsin, we used untargeted proteomics to compare protein profiles in ARSACS fibroblasts versus controls.Our analyses confirmed the involvement of known biological pathways and also implicated calcium and lipid homeostasis in ARSACS skin fibroblasts, a finding further verified in SH-SY5Y SACS–/– cells. Validation through mass spectrometry-based analysis and comparative quantification of lipids by LC-MS in fibroblasts revealed increased levels of ceramides coupled with a reduction of diacylglycerols.In addition to confirming aberrant Ca2+ homeostasis in ARSACS, this study described abnormal lipid levels associated with loss of sacsin.
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蛋白质组学和脂质组学分析揭示了与囊素缺失相关的失调通路
常染色体隐性遗传的沙勒沃瓦-萨古奈痉挛性共济失调症(ARSACS)是一种罕见的无法治愈的神经退行性疾病,由SACS基因突变引起,SACS基因编码的sacsin是一种参与蛋白质平衡、线粒体功能、细胞骨架动力学、自噬、细胞粘附和囊泡贩运的大蛋白。为了进一步了解囊素缺失是如何改变这些过程的,我们使用非靶向蛋白质组学方法比较了ARSACS成纤维细胞和对照组的蛋白质谱。我们的分析证实了已知生物通路的参与,还牵涉到ARSACS皮肤成纤维细胞中的钙和脂质平衡,这一发现在SH-SY5Y SACS-/-细胞中得到了进一步验证。通过质谱分析和 LC-MS 对成纤维细胞中脂质的比较定量进行验证,发现神经酰胺水平升高,二酰甘油水平降低。
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