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E-GEOD-39640 GSE39640 transcription profiling by array Mus musculus

ATXN2-CAG42 sequesters PABPC1 into insolubility and induces FBXW8 in cerebellum of old ataxic knock-in mice

·发布 2012年7月24日 ·更新 2012年8月6日
24
样本数
24
实验数
1
芯片平台
实验描述

Spinocerebellar Ataxia Type 2 (SCA2) is caused by expansion of a polyglutamine encoding triplet repeat in the human ATXN2 gene beyond (CAG)31. This is thought to mediate toxic gain-of-function by protein aggregation, and affect RNA processing, resulting in degenerative processes affecting preferentially cerebellar neurons. As a faithful animal model, we generated a knock-in mouse replacing the single CAG of murine Atxn2 with CAG42, a frequent patient genotype. This expansion size was inherited stably. The mice showed phenotypes with reduced weight and later motor incoordination. Although brain Atxn2 mRNA became elevated, soluble ATXN2 protein levels diminished over time, which might explain partial loss-of-function effects. Deficits in soluble ATXN2 protein correlated with the appearance of insoluble ATXN2, a progressive feature in cerebellum possibly reflecting toxic gains-of-function. Since in vitro ATXN2 overexpression was known to reduce levels of its protein interactor PABPC1, we studied expansion effects on PABPC1. In cortex, PABPC1 transcript, soluble and insoluble protein levels were increased. In more vulnerable cerebellum the progressive insolubility of PABPC1 was accompanied by decreased soluble protein levels, with PABPC1 mRNA showing no compensatory increase. The sequestration of PABPC1 into insolubility by ATXN2 function gains was validated in human cell culture. To understand consequences on mRNA processing, transcriptome profiles at medium and old age in three different tissues were studied and demonstrated selective induction of Fbxw8 in old cerebellum. Fbxw8 is encoded next to the Atxn2 locus and was shown in vitro to decrease the level of expanded insoluble ATXN2 protein. In conclusion, our data support the concept that expanded ATXN2 undergoes progressive insolubility and affects PABPC1 by a toxic gain-of-function mechanism with tissue-specific effects, which may be partially alleviated by the induction of FBXW8. Factorial design comparing Atxn2 knock-in mice with wild type littermates in three different tissues (brainstem, cerebellum, liver)

芯片平台
A-GEOD-11180
[HT_MG-430_PM] Affymetrix HT MG-430 PM Array Plate(24 例)
样本属性
Organism
Mus musculus
organism part
brain stem, cerebellum, liver
variation
Atxn2 Knock-In, wild type
实验信息
登记号
E-GEOD-39640
GEO 编号
GSE39640
实验类型
transcription profiling by array
物种
Mus musculus
发布日期
2012年7月24日
更新日期
2012年8月6日
提交者
Suzana Gispert、 Michael Walter、 Michael H. Walter、 Ewa Damrath、 Georg Auburger、 Udo Rüb、 Melanie Heck、 Joachim Nowock、 Carola Seifried
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分析服务

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