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Mass spectrometry imaging and LC/MS reveal decreased cerebellar phosphoinositides in Niemann-Pick type C1-null mice

机译:质谱成像和LC / MS揭示了Niemann-Photo型C1-Null小鼠中的减少的小脑磷酸钠

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摘要

Niemann-Pick disease type C1 (NPC1) is a lipid storage disorder in which cholesterol and glycosphingolipids accumulate in late endosomal/lysosomal compartments because of mutations in the NPC1 gene. A hallmark of NPC1 is progressive neurodegeneration of the cerebellum as well as visceral organ damage; however, the mechanisms driving this disease pathology are not fully understood. Phosphoinositides are phospholipids that play distinct roles in signal transduction and vesicle trafficking. Here, we utilized a consensus spectra analysis of MS imaging data sets and orthogonal LC/MS analyses to evaluate the spatial distribution of phosphoinositides and quantify them in cerebellar tissue from Npc1-null mice. Our results suggest significant depletion of multiple phosphoinositide species, including PI, PIP, and PIP2, in the cerebellum of the Npc1-null mice in both whole-tissue lysates and myelin-enriched fractions. Additionally, we observed altered levels of the regulatory enzyme phosphatidylinositol 4-kinase type 2α in Npc1-null mice. In contrast, the levels of related kinases, phosphatases, and transfer proteins were unaltered in the Npc1-null mouse model, as observed by Western blot analysis. Our discovery of phosphoinositide lipid biomarkers for NPC1 opens new perspectives on the pathophysiology underlying this fatal neurodegenerative disease.­
机译:尼曼 - 皮克病类型C1(NPC1)是脂质贮积症中的胆固醇和鞘糖脂中积累晚期胞内体/溶酶体区室,因为在NPC1基因突变。 NPC1的特点是小脑的进行性神经变性以及内脏器官损伤;但是,推动这一疾病的病理机制尚未完全清楚。磷酸肌醇是信号转导和囊泡运输中发挥不同作用的磷脂。在这里,我们使用的MS成像数据集和正交LC共识谱分析/ MS分析,以评价磷酸肌醇的空间分布和在从NPC1缺失小鼠小脑组织量化。我们的研究结果表明多磷酸肌醇物种,包括PI,PIP和PIP2的显著枯竭,在这两个全组织裂解液和髓鞘富集分数的NPC1缺陷小鼠小脑。此外,我们观察到在NPC1缺失小鼠的调节酶磷脂酰肌醇4-激酶类型2α水平的改变。相反,相关激酶,磷酸酶和转移蛋白的水平在NPC1空小鼠模型不变,通过Western印迹分析观察。我们对NPC1磷酸肌醇脂生物标志物的发现打开的病理生理这种致命的神经退行性疾病潜在的新的前景。

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