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Embryonic forebrain transcriptome of mice with polyalanine expansion mutations in the ARX homeobox gene

机译:胚胎膨胀突变在arx homeobox基因中的胚胎前脑转录组

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The Aristaless-related homeobox (ARX) gene encodes a paired-type homeodomain transcription factor with critical roles in embryonic development. Mutations in ARX give rise to intellectual disability (ID), epilepsy and brain malformation syndromes. To capture the genetics and molecular disruptions that underpin the ARX-associated clinical phenotypes, we undertook a transcriptome wide RNASeq approach to analyse developing (12.5 dpc) telencephalon of mice modelling two recurrent polyalanine expansion mutations with different phenotypic severities in the ARX gene. Here we report 238 genes significantly deregulated (Log2FC??>?+/?1.1, P-value?<0.05) when both mutations are compared to wild-type (WT) animals. When each mutation is considered separately, a greater number of genes were deregulated in the severe PA1 mice (825) than in the PA2 animals (78). Analysing genes deregulated in either or both mutant strains, we identified 12% as implicated in ID, epilepsy and autism (99/858), with ~5% of them as putative or known direct targets of ARX transcriptional regulation. We propose a core pathway of transcription regulators, including Hdac4, involved in chromatin condensation and transcriptional repression, and one of its targets, the transcription factor Twist1, as potential drivers of the ID and infantile spasms in patients with ARX polyalanine expansion mutations. We predict that the subsequent disturbance to this pathway is a consequence of ARX protein reduction with a broader and more significant level of disruption in the PA1 in comparison to the PA2 mice. Identifying early triggers of ARX-associated phenotypes contributes to our understanding of particular clusters/pathways underpinning comorbid phenotypes that are shared by many neurodevelopmental disorders.
机译:aristaless相关的homeobox(Arx)基因编码了胚胎发育中具有关键作用的配对型同型域转录因子。 ARX中的突变引起智力残疾(ID),癫痫和脑畸形综合征。为了捕获基于ARX相关的临床表型的遗传和分子破坏,我们进行了转录组宽的RNA阵列方法,以分析在arx基因中的不同表型剧性模拟两种反复化聚野生膨胀突变的小鼠的显影(12.5dpc)斜视。在这里,我们报告238个基因显着解除管制(log2FC ??>?+ /?1.1,p值Δ<0.05)与野生型(WT)动物进行比较。当分别考虑每个突变时,在严重的PA1小鼠(825)中,在PA2动物(78)中,将更多数量的基因定义。分析突变体菌株中的任何一种或两种或两个突变体菌株的基因,我们鉴定了12%,如ID,癫痫和自闭症(99/858)中含有〜5%,其诱导或已知的ARX转录调节靶标。我们提出了转录调节剂的核心途径,包括染色蛋白缩合和转录抑制的HDAC4,以及其目标,转录因子Twist1,作为ARX聚野生膨胀突变患者ID和婴儿痉挛的潜在驱动因素。我们预测,与PA2小鼠相比,随后对该途径的后续干扰是ARX蛋白的降低,与PA2小鼠相比,PA1中的PA1中的破坏程度。鉴定ARX相关表型的早期触发有助于我们理解支撑由许多神经发育疾病共享的合并表型的特定簇/途径。

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