Klinck Roscoe, Fourrier Angélique, Thibault Philippe, Toutant Johanne, Durand Mathieu, Lapointe Elvy, Caillet-Boudin Marie-Laure, Sergeant Nicolas, Gourdon Geneviève, Meola Giovanni, Furling Denis, Puymirat Jack, Chabot Benoit
Department of Microbiology and Infectiology, Faculty of Medicine and Heath Sciences, Université de Sherbrooke, Sherbrooke, Quebec, Canada; Laboratory of Functional Genomics, Faculty of Medicine and Heath Sciences, Université de Sherbrooke, Sherbrooke, Quebec, Canada.
Centre de Recherche du CHUL (Centre Hospitalier Universitaire de Québec), Université Laval, Ste-Foy, Quebec, Canada.
PLoS One. 2014 Sep 11;9(9):e107324. doi: 10.1371/journal.pone.0107324. eCollection 2014.
With the goal of identifying splicing alterations in myotonic dystrophy 1 (DM1) tissues that may yield insights into targets or mechanisms, we have surveyed mis-splicing events in three systems using a RT-PCR screening and validation platform. First, a transgenic mouse model expressing CUG-repeats identified splicing alterations shared with other mouse models of DM1. Second, using cell cultures from human embryonic muscle, we noted that DM1-associated splicing alterations were significantly enriched in cytoskeleton (e.g. SORBS1, TACC2, TTN, ACTN1 and DMD) and channel (e.g. KCND3 and TRPM4) genes. Third, of the splicing alterations occurring in adult DM1 tissues, one produced a dominant negative variant of the splicing regulator RBFOX1. Notably, half of the splicing events controlled by MBNL1 were co-regulated by RBFOX1, and several events in this category were mis-spliced in DM1 tissues. Our results suggest that reduced RBFOX1 activity in DM1 tissues may amplify several of the splicing alterations caused by the deficiency in MBNL1.
为了确定强直性肌营养不良1型(DM1)组织中的剪接改变,从而深入了解相关靶点或机制,我们使用逆转录聚合酶链反应(RT-PCR)筛选和验证平台,在三个系统中调查了错配剪接事件。首先,一个表达CUG重复序列的转基因小鼠模型确定了与其他DM1小鼠模型共有的剪接改变。其次,利用人类胚胎肌肉的细胞培养物,我们注意到与DM1相关的剪接改变在细胞骨架(如SORBS1、TACC2、TTN、ACTN1和DMD)和通道(如KCND3和TRPM4)基因中显著富集。第三,在成年DM1组织中发生的剪接改变中,有一种产生了剪接调节因子RBFOX1的显性负变体。值得注意的是,由MBNL1控制的剪接事件中有一半是由RBFOX1共同调节的,并且这一类中的几个事件在DM1组织中发生了错配剪接。我们的结果表明,DM1组织中RBFOX1活性的降低可能会放大由MBNL1缺乏引起的几种剪接改变。