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Lysosome and endoplasmic reticulum quality control pathways in Niemann-Pick type C disease

机译:Niemann-Pick型C病中溶酶体和内质网的质量控制途径

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摘要

Lysosomal storage diseases result from inherited deficiencies of lysosomal hydrolytic activities or lipid transport. Collectively, these disorders are a common cause of morbidity in the pediatric population and are often associated with severe neurodegeneration. Among this group of diseases is Niemann-Pick type C, an autosomal recessive disorder of lipid trafficking that causes cognitive impairment, ataxia and death, most often in childhood. Here, we review the current knowledge of disease pathogenesis, with particular focus on insights gleaned from genetics and the study of model systems. Critical advances in understanding mechanisms that regulate intracellular cholesterol trafficking have emerged from this work and are highlighted. We review effects of disease-causing mutations on quality control pathways involving the lysosome and endoplasmic reticulum, and discuss how they function to clear the most common mutant protein found in Niemann-Pick type C patients, NPC1-I1061T. Finally, we summarize insights into the mechanisms that degrade misfolded transmembrane proteins in the endoplasmic reticulum and how manipulating these quality control pathways may lead to the identification of novel targets for disease modifying therapies.
机译:溶酶体储存疾病是由裂解溶酶体水解活性或脂质转运的遗传缺陷产生的。统称,这些疾病是儿科人群中发病率的常见原因,通常与严重的神经变性有关。在这组疾病中,泻甘胺型C,血脂贩运的常染色体隐性障碍,导致认知障碍,共济失调和死亡,最常见于童年。在这里,我们审查目前对疾病发病机制的知识,特别关注从遗传学中收集的见解和模型系统的研究。从这项工作中出现了调节细胞内胆固醇贩运的理解机制的关键进展,并突出显示。我们审查了疾病导致突变对涉及溶酶体和内质网的质量控制途径的影响,并讨论它们如何运作,清除Niemann-Pick型C患者中发现的最常见的突变蛋白,NPC1-I1061T。最后,我们总结了进入降解内质网中错误折叠的跨膜蛋白的机制以及如何操纵这些质量控制途径的机制可能导致鉴定疾病修饰疗法的新靶标。

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