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Spinocerebellar ataxia type 7 cerebellar disease requires the coordinated action of mutant ataxin-7 in neurons and glia, and displays non-cell-autonomous bergmann glia degeneration.脊髓小脑共济失调 7 型小脑疾病需要突变型 ataxin-7 在神经元和神经胶质细胞中的协调作用,并且表现出非细胞自主的伯格曼神经胶质变性。
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Expanded polyglutamines induce neurodegeneration and trans-neuronal alterations in cerebellum and retina of SCA7 transgenic mice.扩展的多聚谷氨酰胺会在SCA7转基因小鼠的小脑和视网膜中诱导神经变性和跨神经元改变。
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Cell Death Mechanisms in a Mouse Model of Retinal Degeneration in Spinocerebellar Ataxia 7.脊髓小脑共济失调 7 型视网膜变性小鼠模型中的细胞死亡机制
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PolyQ-expanded proteins impair cellular proteostasis of ataxin-3 through sequestering the co-chaperone HSJ1 into aggregates.多聚谷氨酰胺扩展蛋白通过将共伴侣蛋白HSJ1隔离到聚集体中,损害ataxin-3的细胞蛋白质稳态。
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Gene Deregulation and Underlying Mechanisms in Spinocerebellar Ataxias With Polyglutamine Expansion.多聚谷氨酰胺扩增型脊髓小脑共济失调中的基因失调及潜在机制
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本文引用的文献

1
Loss of Drosophila Ataxin-7, a SAGA subunit, reduces H2B ubiquitination and leads to neural and retinal degeneration.果蝇 Ataxin-7 缺失,一种 SAGA 亚基,可减少 H2B 泛素化,并导致神经和视网膜变性。
Genes Dev. 2014 Feb 1;28(3):259-72. doi: 10.1101/gad.225151.113.
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Direct inhibition of Gcn5 protein catalytic activity by polyglutamine-expanded ataxin-7.多聚谷氨酰胺扩展的共济失调-7 蛋白直接抑制 Gcn5 蛋白催化活性。
J Biol Chem. 2013 Nov 22;288(47):34266-34275. doi: 10.1074/jbc.M113.487538. Epub 2013 Oct 15.
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High-fat diet feeding causes rapid, non-apoptotic cleavage of caspase-3 in astrocytes.高脂饮食喂养导致星形胶质细胞中 caspase-3 的快速、非凋亡性裂解。
Brain Res. 2013 May 28;1512:97-105. doi: 10.1016/j.brainres.2013.03.033. Epub 2013 Mar 30.
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Aberrant splicing of HTT generates the pathogenic exon 1 protein in Huntington disease.亨廷顿病中 HTT 的异常剪接导致致病外显子 1 蛋白的产生。
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Caspase-6 activity in a BACHD mouse modulates steady-state levels of mutant huntingtin protein but is not necessary for production of a 586 amino acid proteolytic fragment.BACHD 小鼠中的胱天蛋白酶-6 活性调节突变型亨廷顿蛋白的稳态水平,但对于产生 586 个氨基酸的蛋白水解片段不是必需的。
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Identification and evaluation of small molecule pan-caspase inhibitors in Huntington's disease models.亨廷顿病模型中小分子泛半胱天冬酶抑制剂的鉴定与评估
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A simple composite phenotype scoring system for evaluating mouse models of cerebellar ataxia.一种用于评估小脑共济失调小鼠模型的简单复合表型评分系统。
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Polyglutamine-expanded androgen receptor truncation fragments activate a Bax-dependent apoptotic cascade mediated by DP5/Hrk.多聚谷氨酰胺扩展的雄激素受体截短片段激活由DP5/Hrk介导的依赖Bax的凋亡级联反应。
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A TFTC/STAGA module mediates histone H2A and H2B deubiquitination, coactivates nuclear receptors, and counteracts heterochromatin silencing.一个TFTC/STAGA模块介导组蛋白H2A和H2B去泛素化,共激活核受体,并对抗异染色质沉默。
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ataxin-7的蛋白水解切割促进脊髓小脑共济失调7型视网膜变性和神经功能障碍。

Proteolytic cleavage of ataxin-7 promotes SCA7 retinal degeneration and neurological dysfunction.

作者信息

Guyenet Stephan J, Mookerjee Shona S, Lin Amy, Custer Sara K, Chen Sylvia F, Sopher Bryce L, La Spada Albert R, Ellerby Lisa M

机构信息

Department of Medicine (Medical Genetics) and.

The Buck Institute for Research on Aging, Novato, CA 94945, USA.

出版信息

Hum Mol Genet. 2015 Jul 15;24(14):3908-17. doi: 10.1093/hmg/ddv121. Epub 2015 Apr 9.

DOI:10.1093/hmg/ddv121
PMID:25859008
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4476441/
Abstract

The neurodegenerative disorder spinocerebellar ataxia type 7 (SCA7) is caused by a polyglutamine (polyQ) expansion in the ataxin-7 protein, categorizing SCA7 as one member of a large class of heritable neurodegenerative proteinopathies. Cleavage of ataxin-7 by the protease caspase-7 has been demonstrated in vitro, and the accumulation of proteolytic cleavage products in SCA7 patients and mouse models has been identified as an early pathological change. However, it remains unknown whether a causal relationship exists between ataxin-7 proteolysis and in vivo SCA7 disease progression. To determine whether caspase cleavage is a critical event in SCA7 disease pathogenesis, we generated transgenic mice expressing polyQ-expanded ataxin-7 with a second-site mutation (D266N) to prevent caspase-7 proteolysis. When we compared SCA7-D266N mice with SCA7 mice lacking the D266N mutation, we found that SCA7-D266N mice exhibited improved motor performance, reduced neurodegeneration and substantial lifespan extension. Our findings indicate that proteolysis at the D266 caspase-7 cleavage site is an important mediator of ataxin-7 neurotoxicity, suggesting that inhibition of caspase-7 cleavage of polyQ-ataxin-7 may be a promising therapeutic strategy for this untreatable disorder.

摘要

神经退行性疾病7型脊髓小脑共济失调(SCA7)由ataxin-7蛋白中的多聚谷氨酰胺(polyQ)扩增引起,这使SCA7成为一大类遗传性神经退行性蛋白病中的一员。蛋白酶caspase-7对ataxin-7的切割已在体外得到证实,并且在SCA7患者和小鼠模型中蛋白水解产物的积累已被确定为早期病理变化。然而,ataxin-7蛋白水解与体内SCA7疾病进展之间是否存在因果关系仍不清楚。为了确定caspase切割是否是SCA7疾病发病机制中的关键事件,我们构建了表达带有第二位点突变(D266N)的polyQ扩增ataxin-7的转基因小鼠,以防止caspase-7蛋白水解。当我们将SCA7-D266N小鼠与缺乏D266N突变的SCA7小鼠进行比较时,我们发现SCA7-D266N小鼠的运动能力得到改善,神经退行性变减少,寿命显著延长。我们的研究结果表明,在D266 caspase-7切割位点的蛋白水解是ataxin-7神经毒性的重要介导因素,这表明抑制caspase-7对polyQ-ataxin-7的切割可能是治疗这种无法治愈疾病的一种有前景的治疗策略。