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跨越FUS基因主要转录起始位点的多个调控结构域的特征分析,FUS基因是运动神经元疾病的候选基因。

Characterisation of multiple regulatory domains spanning the major transcriptional start site of the FUS gene, a candidate gene for motor neurone disease.

作者信息

Khursheed Kejhal, Wilm Thomas P, Cashman Christine, Quinn John P, Bubb Vivien J, Moss Diana J

机构信息

Institute of Translational Medicine, Sherrington Buildings, Ashton St, Liverpool University, Liverpool L69 3GE, UK.

Institute of Translational Medicine, Sherrington Buildings, Ashton St, Liverpool University, Liverpool L69 3GE, UK.

出版信息

Brain Res. 2015 Jan 21;1595:1-9. doi: 10.1016/j.brainres.2014.10.056. Epub 2014 Nov 5.

DOI:10.1016/j.brainres.2014.10.056
PMID:25451114
Abstract

Fused-In-Sarcoma (FUS) is a candidate gene for neurological disorders including motor neurone disease and Parkinson׳s disease in addition to various types of cancer. Recently it has been reported that over expression of FUS causes motor neurone disease in mouse models hence mutations leading to changes in gene expression may contribute to the development of neurodegenerative disease. Genome evolutionary conservation was used to predict important cis-acting DNA regulators of the FUS gene promoter that direct transcription. The putative regulators identified were analysed in reporter gene assays in cells and in chick embryos. Our analysis indicated in addition to regulatory domains 5' of the transcriptional start site an important regulatory domain resides in intron 1 of the gene itself. This intronic domain functioned both in cell lines and in vivo in the neural tube of the chick embryo including developing motor neurones. Our data suggest the interaction of multiple domains including intronic domains are involved in expression of FUS. A better understanding of the regulation of expression of FUS may give insight into how its stimulus inducible expression may be associated with neurological disorders.

摘要

融合肉瘤蛋白(FUS)是一种候选基因,除了与各类癌症有关外,还与包括运动神经元病和帕金森病在内的神经疾病相关。最近有报道称,在小鼠模型中FUS的过表达会导致运动神经元病,因此导致基因表达变化的突变可能会促使神经退行性疾病的发展。利用基因组进化保守性来预测指导转录的FUS基因启动子的重要顺式作用DNA调控因子。在细胞和鸡胚的报告基因检测中对鉴定出的假定调控因子进行了分析。我们的分析表明,除了转录起始位点5'端的调控域外,一个重要的调控域位于该基因自身的内含子1中。这个内含子域在细胞系以及鸡胚神经管(包括发育中的运动神经元)的体内均发挥作用。我们的数据表明,包括内含子域在内的多个域之间的相互作用参与了FUS的表达。更好地理解FUS表达的调控可能有助于深入了解其刺激诱导表达与神经疾病之间的关联。

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