Young Juan I, Hong Eugene P, Castle John C, Crespo-Barreto Juan, Bowman Aaron B, Rose Matthew F, Kang Dongcheul, Richman Ron, Johnson Jason M, Berget Susan, Zoghbi Huda Y
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17551-8. doi: 10.1073/pnas.0507856102. Epub 2005 Oct 26.
Rett syndrome (RTT) is a postnatal neurodevelopmental disorder characterized by the loss of acquired motor and language skills, autistic features, and unusual stereotyped movements. RTT is caused by mutations in the X-linked gene encoding methyl-CpG binding protein 2 (MeCP2). Mutations in MECP2 cause a variety of neurodevelopmental disorders including X-linked mental retardation, psychiatric disorders, and some cases of autism. Although MeCP2 was identified as a methylation-dependent transcriptional repressor, transcriptional profiling of RNAs from mice lacking MeCP2 did not reveal significant gene expression changes, suggesting that MeCP2 does not simply function as a global repressor. Changes in expression of a few genes have been observed, but these alterations do not explain the full spectrum of Rett-like phenotypes, raising the possibility that additional MeCP2 functions play a role in pathogenesis. In this study, we show that MeCP2 interacts with the RNA-binding protein Y box-binding protein 1 and regulates splicing of reporter minigenes. Importantly, we found aberrant alternative splicing patterns in a mouse model of RTT. Thus, we uncovered a previously uncharacterized function of MeCP2 that involves regulation of splicing, in addition to its role as a transcriptional repressor.
瑞特综合征(RTT)是一种产后神经发育障碍,其特征为已获得的运动和语言技能丧失、自闭症特征以及异常的刻板动作。RTT由编码甲基-CpG结合蛋白2(MeCP2)的X连锁基因突变引起。MECP2基因突变会导致多种神经发育障碍,包括X连锁智力迟钝、精神疾病以及一些自闭症病例。尽管MeCP2被鉴定为一种依赖甲基化的转录抑制因子,但对缺乏MeCP2的小鼠的RNA进行转录谱分析并未揭示显著的基因表达变化,这表明MeCP2并非简单地作为一种全局抑制因子发挥作用。已观察到少数基因的表达变化,但这些改变并不能解释瑞特样表型的全貌,这增加了MeCP2的其他功能在发病机制中起作用的可能性。在本研究中,我们表明MeCP2与RNA结合蛋白Y盒结合蛋白1相互作用,并调节报告基因小基因的剪接。重要的是,我们在RTT小鼠模型中发现了异常的可变剪接模式。因此,我们发现了MeCP2以前未被描述的功能,即除了作为转录抑制因子的作用外,还涉及对剪接的调节。