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Overexpression of the myelin proteolipid protein leads to accumulation of cholesterol and proteolipid protein in endosomes/lysosomes: implications for Pelizaeus-Merzbacher disease

机译:髓磷脂蛋白脂质蛋白的过表达导致内体/溶酶体中胆固醇和蛋白脂质蛋白的积累:对Pelizaeus-Merzbacher病的影响

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摘要

Duplications and overexpression of the proteolipid protein (PLP) gene are known to cause the dysmyelinating disorder Pelizaeus-Merzbacher disease (PMD). To understand the cellular response to overexpressed PLP in PMD, we have overexpressed PLP in BHK cells and primary cultures of oligodendrocytes with the Semliki Forest virus expression system. Overexpressed PLP was routed to late endosomes/lysosomes and caused a sequestration of cholesterol in these compartments. Similar results were seen in transgenic mice overexpressing PLP. With time, the endosomal/lysosomal accumulation of cholesterol and PLP led to an increase in the amount of detergent-insoluble cellular cholesterol and PLP. In addition, two fluorescent sphingolipids, BODIPY–lactosylceramide and –galactosylceramide, which under normal conditions are sorted to the Golgi apparatus, were missorted to perinuclear structures. This was also the case for the lipid raft marker glucosylphosphatidylinositol–yellow fluorescence protein, which under normal steady-state conditions is localized on the plasma membrane and to the Golgi complex. Taken together, we show that overexpression of PLP leads to the formation of endosomal/lysosomal accumulations of cholesterol and PLP, accompanied by the mistrafficking of raft components. We propose that these accumulations perturb the process of myelination and impair the viability of oligodendrocytes.
机译:已知蛋白脂蛋白(PLP)基因的重复和过度表达会导致髓鞘异常性疾病Pelizaeus-Merzbacher病(PMD)。为了解细胞对PMD中过表达PLP的反应,我们使用Semliki Forest病毒表达系统在BHK细胞和少突胶质细胞的原代培养物中过表达PLP。过表达的PLP被输送至晚期内体/溶酶体,并导致这些隔室中的胆固醇被隔离。在过表达PLP的转基因小鼠中观察到相似的结果。随着时间的流逝,胆固醇和PLP的内体/溶酶体积累导致去污剂不溶性细胞胆固醇和PLP的数量增加。此外,在正常条件下被分类到高尔基体的两种荧光鞘脂,BODIPY-乳糖基神经酰胺和-半乳糖基神经酰胺,被误认为是核周结构。脂质筏标记葡糖基磷脂酰肌醇-黄​​色荧光蛋白也是如此,其在正常稳态条件下位于质膜和高尔基体上。两者合计,我们表明PLP的过度表达导致形成内体/溶酶体胆固醇和PLP积累,并伴随着筏成分的误贩运。我们建议这些积累扰乱髓鞘形成过程,并损害少突胶质细胞的生存能力。

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