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Niemann-Pick 型 C 病中的内溶酶体功能障碍和神经元-神经胶质细胞串扰。

Endo-lysosomal dysfunction and neuronal-glial crosstalk in Niemann-Pick type C disease.

机构信息

German Center for Neurodegenerative Diseases (DZNE) Munich, 81377 Munich, Germany.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2024 Apr 8;379(1899):20220388. doi: 10.1098/rstb.2022.0388. Epub 2024 Feb 19.

Abstract

Niemann-Pick type C (NPC) disease is a rare progressive lysosomal lipid storage disorder that manifests with a heterogeneous spectrum of clinical syndromes, including visceral, neurological and psychiatric symptoms. This monogenetic autosomal recessive disease is largely caused by mutations in the gene, which controls intracellular lipid homeostasis. Vesicle-mediated endo-lysosomal lipid trafficking and non-vesicular lipid exchange via inter-organelle membrane contact sites are both regulated by the NPC1 protein. Loss of NPC1 function therefore triggers intracellular accumulation of diverse lipid species, including cholesterol, glycosphingolipids, sphingomyelin and sphingosine. The NPC1-mediated dysfunction of lipid transport has severe consequences for all brain cells, leading to neurodegeneration. Besides the cell-autonomous contribution of neuronal NPC1, aberrant NPC1 signalling in other brain cells is critical for the pathology. We discuss here the importance of endo-lysosomal dysfunction and a tight crosstalk between neurons, oligodendrocytes, astrocytes and microglia in NPC pathology. We strongly believe that a cell-specific rescue may not be sufficient to counteract the severity of the NPC pathology, but targeting common mechanisms, such as endo-lysosomal and lipid trafficking dysfunction, may ameliorate NPC pathology. This article is part of a discussion meeting issue 'Understanding the endo-lysosomal network in neurodegeneration'.

摘要

尼曼-匹克 C 型(NPC)疾病是一种罕见的进行性溶酶体脂质贮积症,表现为多种临床综合征,包括内脏、神经和精神症状。这种单基因常染色体隐性遗传病主要由 基因的突变引起,该基因控制细胞内脂质稳态。囊泡介导的内溶酶体脂质转运和通过细胞器间膜接触位点的非囊泡脂质交换均受 NPC1 蛋白调节。因此,NPC1 功能的丧失会触发多种脂质物质(包括胆固醇、糖脂、鞘磷脂和神经酰胺)在细胞内的积累。NPC1 介导的脂质转运功能障碍对所有脑细胞都有严重影响,导致神经退行性变。除了神经元 NPC1 的细胞自主贡献外,其他脑细胞中异常的 NPC1 信号对病理学也至关重要。我们在这里讨论内溶酶体功能障碍以及神经元、少突胶质细胞、星形胶质细胞和小胶质细胞之间紧密的串扰在 NPC 病理学中的重要性。我们坚信,细胞特异性挽救可能不足以对抗 NPC 病理学的严重程度,但针对内溶酶体和脂质转运功能障碍等共同机制可能会改善 NPC 病理学。本文是关于“理解神经退行性变中的内溶酶体网络”的讨论会议议题的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d38/10874755/b589262580ea/rstb20220388f01.jpg

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