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A neuronal enhancer network upstream of MEF2C is compromised in patients with Rett-like characteristics

机译:MEF2C上游的神经元增强网络在患者中受到抑制的患者(Rett)特征

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Mutations in myocyte enhancer factor 2C (MEF2C), an important transcription factor in neurodevelopment, are associated with a Rett-like syndrome. Structural variants (SVs) upstream of MEF2C, which do not disrupt the gene itself, have also been found in patients with a similar phenotype, suggesting that disruption of MEF2C regulatory elements can also cause a Rett-like phenotype. To characterize those elements that regulate MEF2C during neural development and that are affected by these SVs, we used genomic tools coupled with both in vitro and in vivo functional assays. Through circularized chromosome conformation capture sequencing (4C-seq) and the assay for transposase-accessible chromatin using sequencing (ATAC-seq), we revealed a complex interaction network in which the MEF2C promoter physically contacts several distal enhancers that are deleted or translocated by disease-associated SVs. A total of 16 selected candidate regulatory sequences were tested for enhancer activity in vitro, with 14 found to be functional enhancers. Further analyses of their in vivo activity in zebrafish showed that each of these enhancers has a distinct activity pattern during development, with eight enhancers displaying neuronal activity. In summary, our results disentangle a complex regulatory network governing neuronal MEF2C expression that involves multiple distal enhancers. In addition, the characterized neuronal enhancers pose as novel candidates to screen for mutations in neurodevelopmental disorders, such as Rett-like syndrome.
机译:肌细胞增强子因子2C(MEF2C)中的突变是神经发育中的重要转录因子,与Rett样综合征有关。在患有类似表型的患者中也没有发现MEF2C上游的结构变体(SVS),这也没有发现类似表型的患者,表明MEF2C调节元件的破坏也可能导致含有β状表型。为了表征在神经发育期间调节MEF2C的那些元素,并且受到这些SV的影响,我们使用与体外和体内功能测定偶联的基因组工具。通过圆形化染色体构象捕获测序(4C-SEQ)和使用测序的转座酶可接近染色质的测定(ATAC-SEQ),我们揭示了一种复杂的相互作用网络,其中MEF2C启动子物理地与疾病删除或易用的几个远端增强剂进行物理接触 - 分配的svs。在体外测试总共16种选定的候选调节序列进行增强剂活性,14个发现是功能性增强剂。进一步分析它们在斑马鱼中的体内活性显示,这些增强剂中的每一个在发育过程中具有明显的活性模式,其中八个增强剂显示出神经元活动。总之,我们的结果解开了一种用于治疗神经元MEF2C表达的复杂调节网络,涉及多个远端增强剂。此外,所表征的神经元增强剂作为新型候选物,以筛选神经发育障碍中的突变,例如Rett样综合征。

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