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尼曼-匹克C型病中小脑浦肯野神经元的细胞自主死亡与自噬

Cell-autonomous death of cerebellar purkinje neurons with autophagy in Niemann-Pick type C disease.

作者信息

Ko Dennis C, Milenkovic Ljiljana, Beier Steven M, Manuel Hermogenes, Buchanan JoAnn, Scott Matthew P

机构信息

Department of Developmental Biology, Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, California, USA.

出版信息

PLoS Genet. 2005 Jul;1(1):81-95. doi: 10.1371/journal.pgen.0010007. Epub 2005 Jul 25.

Abstract

Niemann-Pick type C is a neurodegenerative lysosomal storage disorder caused by mutations in either of two genes, npc1 and npc2. Cells lacking Npc1, which is a transmembrane protein related to the Hedgehog receptor Patched, or Npc2, which is a secreted cholesterol-binding protein, have aberrant organelle trafficking and accumulate large quantities of cholesterol and other lipids. Though the Npc proteins are produced by all cells, cerebellar Purkinje neurons are especially sensitive to loss of Npc function. Since Niemann-Pick type C disease involves circulating molecules such as sterols and steroids and a robust inflammatory response within the brain parenchyma, it is crucial to determine whether external factors affect the survival of Purkinje cells (PCs). We investigated the basis of neurodegeneration in chimeric mice that have functional npc1 in only some cells. Death of mutant npc1 cells was not prevented by neighboring wild-type cells, and wild-type PCs were not poisoned by surrounding mutant npc1 cells. PCs undergoing cell-autonomous degeneration have features consistent with autophagic cell death. Chimeric mice exhibited a remarkable delay and reduction of wasting and ataxia despite their substantial amount of mutant tissue and dying cells, revealing a robust mechanism that partially compensates for massive PC death.

摘要

尼曼-匹克C型病是一种神经退行性溶酶体贮积症,由两个基因(npc1和npc2)中任意一个发生突变引起。缺乏Npc1(一种与刺猬受体Patched相关的跨膜蛋白)或Npc2(一种分泌型胆固醇结合蛋白)的细胞,会出现异常的细胞器运输,并积累大量胆固醇和其他脂质。尽管所有细胞都会产生Npc蛋白,但小脑浦肯野神经元对Npc功能丧失尤为敏感。由于尼曼-匹克C型病涉及固醇和类固醇等循环分子以及脑实质内强烈的炎症反应,因此确定外部因素是否影响浦肯野细胞(PCs)的存活至关重要。我们研究了仅在部分细胞中具有功能性npc1的嵌合小鼠神经退行性变的基础。邻近的野生型细胞无法阻止突变型npc1细胞的死亡,野生型PCs也不会被周围的突变型npc1细胞毒害。经历细胞自主退化的PCs具有与自噬性细胞死亡一致的特征。尽管嵌合小鼠有大量突变组织和正在死亡的细胞,但它们的消瘦和共济失调出现了显著延迟且程度减轻,这揭示了一种强大的机制,可部分补偿大量PCs的死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa46/1183526/69af2f554b3c/pgen.0010007.g001.jpg

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