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CRISPR/Cas9-mediated deletion of lncRNA Gm26878 in the distant Foxf1 enhancer region

机译:CRISPR / CAS9介导的LNCRNA GM26878在远处FOXF1增强子区域缺失

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Recent genome editing techniques, including CRISPR mutagenesis screens, offer unparalleled opportunities to study the regulatory non-coding genomic regions, enhancers, promoters, and functional non-coding RNAs. Heterozygous point mutations in FOXF1 and genomic deletion copy-number variants at chromosomal region 16q24.1 involving FOXF1 or its regulatory region mapping 300 kb upstream of FOXF1 and leaving it intact have been identified in the vast majority of patients with a lethal neonatal lung disease, alveolar capillary dysplasia with misalignment of pulmonary veins (ACDMPV). Homozygous Foxf1 (-/-) mice have been shown to die by embryonic day 8.5 because of defects in the development of extraembryonic and lateral mesoderm-derived tissues, whereas heterozygous Foxf1 (+/-) mice exhibit features resembling ACDMPV. We have previously defined a human lung-specific enhancer region encoding two long non-coding RNAs, LINC01081 and LINC01082, expressed in the lungs. To investigate the biological significance of lncRNAs in the Foxf1 enhancer region, we have generated a CRISPR/Cas9-mediated 2.4 kb deletion involving the entire lncRNA-encoding gene Gm26878, located in the mouse region syntenic with the human Foxf1 upstream enhancer. Very recently, this mouse genomic region has been shown to function as a Foxf1 enhancer. Our results indicate that homozygous loss of Gm26878 is neonatal lethal with low penetrance. No changes in Foxf1 expression were observed, suggesting that the regulation of Foxf1 expression differs between mouse and human.
机译:最近的基因组编辑技术,包括CRISPR诱变屏幕,提供了学习监管非编码基因组区域,增强剂,启动子和功能性非编码RNA的无与伦比的机会。 FoxF1和基因组缺失拷贝数变体中的杂合子点突变在染色体区域16Q24.1中涉及FoxF1或其调节区在FoxF1上游映射300kb并在绝大多数致命的新生儿肺病患者中鉴定出完整,肺泡毛细血管发育不良,具有肺静脉未对准(ACDMPV)。由于胚胎第8.5天,已显示纯合的FoxF1( - / - )小鼠由于缺陷的缺陷,因此缺陷缺陷,而杂合FoxF1(+/-)小鼠表现出类似ACDMPV的特征。我们之前已经定义了一种在肺部表达的两种长期非编码RNA,LINC01081和LINC01082的人肺特异性增强子区域。为了探讨富氧化菌菌菌的生物学意义在FoxF1增强子区域中的生物学意义,我们产生了涉及整个LNCRNA编码基因GM26878的CRISPR / CAS9介导的2.4kB缺失,该GM26878与人FoxF1上游增强剂在小鼠区域中。最近,该鼠标基因组区域已被证明用作FoxF1增强剂。我们的结果表明,GM26878的纯合丧失是新生儿致死,渗透低。没有观察到FoxF1表达的变化,表明FoxF1表达的调节在小鼠和人之间的不同之处不同。

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