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Lipid metabolic perturbation is an early-onset phenotype in adult spinster mutants: a Drosophila model for lysosomal storage disorders

机译:脂质代谢扰动是成年Spinster突变体的早期表型:溶酶体贮积病的果蝇模型

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摘要

Intracellular accumulation of lipids and swollen dysfunctional lysosomes are linked to several neurodegenerative diseases, including lysosomal storage disorders (LSD). Detailed characterization of lipid metabolic changes in relation to the onset and progression of neurodegeneration is currently missing. We systematically analyzed lipid perturbations in spinster (spin) mutants, a Drosophila model of LSD-like neurodegeneration. Our results highlight an imbalance in brain ceramide and sphingosine in the early stages of neurodegeneration, preceding the accumulation of endomembranous structures, manifestation of altered behavior, and buildup of lipofuscin. Manipulating levels of ceramidase and altering these lipids in spin mutants allowed us to conclude that ceramide homeostasis is the driving force in disease progression and is integral to spin function in the adult nervous system. We identified 29 novel physical interaction partners of Spin and focused on the lipid carrier protein, Lipophorin (Lpp). A subset of Lpp and Spin colocalize in the brain and within organs specialized for lipid metabolism (fat bodies and oenocytes). Reduced Lpp protein was observed in spin mutant tissues. Finally, increased levels of lipid metabolites produced by oenocytes in spin mutants allude to a functional interaction between Spin and Lpp, underscoring the systemic nature of lipid perturbation in LSD.
机译:脂质的细胞内蓄积和功能障碍的溶酶体肿胀与几种神经退行性疾病有关,包括溶酶体贮积病(LSD)。与神经退行性疾病的发生和发展有关的脂质代谢变化的详细表征目前尚缺乏。我们系统地分析了Spinster(spin)突变体(一种LSD样神经变性的果蝇模型)中的脂质扰动。我们的结果表明,在神经变性的早期,脑内神经酰胺和鞘氨醇的失衡,先于内膜结构的积累,行为改变的表现和脂褐素的积累。操纵神经酰胺酶的水平并改变自旋突变体中的这些脂质可以使我们得出结论,神经酰胺稳态是疾病进展的驱动力,并且是成人神经系统自旋功能不可或缺的部分。我们确定了29种新型的Spin物理相互作用伙伴,并专注于脂质载体蛋白Lipophorin(Lpp)。 Lpp和Spin的子集在大脑和专门用于脂质代谢的器官(脂肪体和卵母细胞)内共定位。在自旋突变体组织中观察到Lpp蛋白降低。最后,自旋突变体中的成肌细胞产生的脂质代谢产物水平升高,暗示了自旋和Lpp之间的功能相互作用,强调了LSD中脂质摄动的系统性。

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