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C9orf72:位于溶酶体细胞生物学与神经退行性疾病的交叉点上。

C9orf72: At the intersection of lysosome cell biology and neurodegenerative disease.

作者信息

Amick Joseph, Ferguson Shawn M

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut.

Program in Cellular Neuroscience, Neurodegeneration and Repair, Yale University School of Medicine, New Haven, Connecticut.

出版信息

Traffic. 2017 May;18(5):267-276. doi: 10.1111/tra.12477. Epub 2017 Mar 23.

DOI:10.1111/tra.12477
PMID:28266105
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5389918/
Abstract

The discovery that expansion of a hexanucleotide repeat within a noncoding region of the C9orf72 gene causes amyotrophic lateral sclerosis and frontotemporal dementia raised questions about C9orf72 protein function and potential disease relevance. The major predicted structural feature of the C9orf72 protein is a DENN (differentially expressed in normal and neoplastic cells) domain. As DENN domains are best characterized for regulation of specific Rab GTPases, it has been proposed that C9orf72 may also act through regulation of a GTPase target. Recent genetic and cell biological studies furthermore indicate that the C9orf72 protein functions at lysosomes as part of a larger complex that also contains the Smith-Magenis chromosome region 8 (SMCR8) and WD repeat-containing protein 41 (WDR41) proteins. An important role for C9orf72 at lysosomes is supported by defects in lysosome morphology and mTOR complex 1 (mTORC1) signaling arising from C9orf72 KO in diverse model systems. Collectively, these new findings define a C9orf72-containing protein complex and a lysosomal site of action as central to C9orf72 function and provide a foundation for the elucidation of direct physiological targets for C9orf72. Further elucidation of mechanisms whereby C9orf72 regulates lysosome function will help to determine how the reductions in C9orf72 expression levels that accompany hexanucleotide repeat expansions contribute to disease pathology.

摘要

C9orf72基因非编码区六核苷酸重复序列的扩增会导致肌萎缩侧索硬化症和额颞叶痴呆,这一发现引发了关于C9orf72蛋白功能及其与疾病潜在关联的问题。C9orf72蛋白主要的预测结构特征是一个DENN(在正常细胞和肿瘤细胞中差异表达)结构域。由于DENN结构域在调节特定Rab GTP酶方面具有最佳特征,因此有人提出C9orf72可能也通过调节一个GTP酶靶点发挥作用。此外,最近的遗传学和细胞生物学研究表明,C9orf72蛋白在溶酶体中发挥作用,是一个更大复合物的一部分,该复合物还包含史密斯-马吉尼斯染色体区域8(SMCR8)和含WD重复序列的蛋白41(WDR41)。在多种模型系统中,C9orf72基因敲除导致溶酶体形态和mTOR复合物1(mTORC1)信号传导缺陷,这支持了C9orf72在溶酶体中的重要作用。总的来说,这些新发现确定了一个包含C9orf72的蛋白复合物以及一个溶酶体作用位点,它们是C9orf72功能的核心,并为阐明C9orf72的直接生理靶点提供了基础。进一步阐明C9orf72调节溶酶体功能的机制,将有助于确定六核苷酸重复序列扩增伴随的C9orf72表达水平降低如何导致疾病病理。

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本文引用的文献

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PLoS Genet. 2016 Nov 22;12(11):e1006443. doi: 10.1371/journal.pgen.1006443. eCollection 2016 Nov.
2
VCP/p97 cooperates with YOD1, UBXD1 and PLAA to drive clearance of ruptured lysosomes by autophagy.VCP/p97与YOD1、UBXD1和PLAA协同作用,通过自噬驱动破裂溶酶体的清除。
EMBO J. 2017 Jan 17;36(2):135-150. doi: 10.15252/embj.201695148. Epub 2016 Oct 17.
3
The C9ORF72 GGGGCC expansion forms RNA G-quadruplex inclusions and sequesters hnRNP H to disrupt splicing in ALS brains.
散发型额颞叶痴呆患者的溶酶体蛋白和储存物质的增加与 GRN 突变导致的额颞叶痴呆患者相似。
Acta Neuropathol Commun. 2023 Apr 28;11(1):70. doi: 10.1186/s40478-023-01571-4.
4
Autophagy and neurodegeneration: Unraveling the role of C9ORF72 in the regulation of autophagy and its relationship to ALS-FTD pathology.自噬与神经退行性变:解析C9ORF72在自噬调节中的作用及其与肌萎缩侧索硬化症-额颞叶痴呆病理的关系。
Front Cell Neurosci. 2023 Mar 16;17:1086895. doi: 10.3389/fncel.2023.1086895. eCollection 2023.
5
Longin domain GAP complexes in nutrient signalling, membrane traffic and neurodegeneration.营养信号、膜运输和神经退行性病变中的 Longin 结构域 GAP 复合物。
FEBS Lett. 2023 Mar;597(6):750-761. doi: 10.1002/1873-3468.14538. Epub 2022 Nov 22.
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A C9ORF72/SMCR8-containing complex regulates ULK1 and plays a dual role in autophagy.一个包含 C9ORF72/SMCR8 的复合物调节 ULK1,并在自噬中发挥双重作用。
Sci Adv. 2016 Sep 2;2(9):e1601167. doi: 10.1126/sciadv.1601167. eCollection 2016 Sep.
5
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Full ablation of C9orf72 in mice causes immune system-related pathology and neoplastic events but no motor neuron defects.小鼠中C9orf72的完全缺失会导致免疫系统相关的病理变化和肿瘤事件,但不会导致运动神经元缺陷。
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10
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Acta Neuropathol Commun. 2016 May 18;4(1):51. doi: 10.1186/s40478-016-0324-5.