作者
Harrison W Gabel, Benyam Kinde, Hume Stroud, Caitlin S Gilbert, David A Harmin, Nathaniel R Kastan, Martin Hemberg, Daniel H Ebert, Michael E Greenberg
发表日期
2015/6/4
期刊
Nature
卷号
522
期号
7554
页码范围
89-93
出版商
Nature Publishing Group UK
简介
Disruption of the MECP2 gene leads to Rett syndrome (RTT), a severe neurological disorder with features of autism. MECP2 encodes a methyl-DNA-binding protein that has been proposed to function as a transcriptional repressor, but despite numerous mouse studies examining neuronal gene expression in Mecp2 mutants, no clear model has emerged for how MeCP2 protein regulates transcription,,,,,,. Here we identify a genome-wide length-dependent increase in gene expression in MeCP2 mutant mouse models and human RTT brains. We present evidence that MeCP2 represses gene expression by binding to methylated CA sites within long genes, and that in neurons lacking MeCP2, decreasing the expression of long genes attenuates RTT-associated cellular deficits. In addition, we find that long genes as a population are enriched for neuronal functions and selectively expressed in the brain. These findings …
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