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首页> 外文期刊>Autophagy >Loss of functional MYO1C/myosin 1c, a motor protein involved in lipid raft trafficking, disrupts autophagosome-lysosome fusion
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Loss of functional MYO1C/myosin 1c, a motor protein involved in lipid raft trafficking, disrupts autophagosome-lysosome fusion

机译:功能性MyO1C / myosin 1C的丧失,一种涉及脂筏贩运的电机蛋白,破坏了自噬体溶酶体融合

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摘要

MYO1C, a single-headed class I myosin, associates with cholesterol-enriched lipid rafts and facilitates their recycling from intracellular compartments to the cell surface. Absence of functional MYO1C disturbs the cellular distribution of lipid rafts, causes the accumulation of cholesterol-enriched membranes in the perinuclear recycling compartment, and leads to enlargement of endolysosomal membranes. Several feeder pathways, including classical endocytosis but also the autophagy pathway, maintain the health of the cell by selective degradation of cargo through fusion with the lysosome. Here we show that loss of functional MYO1C leads to an increase in total cellular cholesterol and its disrupted subcellular distribution. We observe an accumulation of autophagic structures caused by a block in fusion with the lysosome and a defect in autophagic cargo degradation. Interestingly, the loss of MYO1C has no effect on degradation of endocytic cargo such as EGFR, illustrating that although the endolysosomal compartment is enlarged in size, it is functional, contains active hydrolases, and the correct pH. Our results highlight the importance of correct lipid composition in autophagosomes and lysosomes to enable them to fuse. Ablating MYO1C function causes abnormal cholesterol distribution, which has a major selective impact on the autophagy pathway.
机译:MyO1C,一种单头I类肌球蛋白,与富含胆固醇的脂质筏相关联,并促进将其从细胞内隔室中的回收给细胞表面。没有功能性myO1c扰乱脂质筏的细胞分布,导致胆固醇浓缩膜中的胆固醇回收隔室积聚,并导致底糖聚叶膜的扩大。几种饲养途径,包括经典内吞作用,也是自噬途径,通过与溶酶体的融合选择性降解货物的选择性降解来维持细胞的健康。在这里,我们表明功能性MyO1C的损失导致总细胞胆固醇的增加和其破坏的亚细胞分布。我们观察到由粘合剂与溶酶体的嵌段引起的自噬结构的积累和自噬曲线降解中的缺陷。有趣的是,MyO 1C的丧失对内吞碳的降解诸如EGFR的劣化,说明虽然底糖体隔室的尺寸增大,但它是功能性的,含有活性水解酶,并且正确的pH。我们的结果突出了正确的脂质组合物在自噬体和溶酶体中的重要性,使它们能够保险。消融MyO1C功能导致异常的胆固醇分布,对自噬途径具有重大选择性影响。

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