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Novel FOXF1 deep intronic deletion causes lethal lung developmental disorder Alveolar Capillary Dysplasia with Misalignment of Pulmonary Veins

机译:新型FOXF1深度内含子缺失导致致命的肺发育异常肺泡毛细血管发育不良肺静脉排列不全

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摘要

Haploinsufficiency of FOXF1 causes an autosomal dominant neonatally lethal lung disorder, Alveolar Capillary Dysplasia with Misalignment of Pulmonary Veins (ACDMPV). We identified novel 0.8-kb deletion within the 1.4-kb intron of FOXF1 in a deceased newborn diagnosed with ACDMPV. The deletion arose de novo on the maternal copy of the chromosome 16, and did not affect FOXF1 minigene splicing tested in lung fibroblasts. However, FOXF1 transcript level in the ACDMPV peripheral lung tissue was reduced by almost 40%. We found that, in an in vitro reporter assay, the FOXF1 intron exhibited moderate transcriptional enhancer activity, correlating with the presence of binding sites for expression regulators CTCF and CEBPB, whereas its truncated copy, that lost major CTCF and CEBPB binding sites, inhibited the FOXF1 promoter. Our data further emphasize the importance of testing the non-protein coding regions of the genome currently not covered by diagnostic chromosomal microarray analyses or whole exome sequencing.
机译:FOXF1的单倍剂量不足会导致常染色体显性遗传性新生儿致命性肺部疾病,肺泡毛细血管发育不良(ACDMPV)。我们在诊断为ACDMPV的已故新生儿中,在FOXF1的1.4 kb内含子中发现了新的0.8 kb缺失。该缺失从头开始出现在16号染色体的母本拷贝上,并不影响在肺成纤维细胞中测试的FOXF1小基因剪接。但是,ACDMPV周围肺组织中的FOXF1转录水平降低了近40%。我们发现,在体外报告基因检测中,FOXF1内含子表现出中等的转录增强子活性,与表达调节因子CTCF和CEBPB的结合位点相关,而其截短的拷贝丢失了主要的CTCF和CEBPB结合位点,抑制了转录。 FOXF1启动子。我们的数据进一步强调了测试目前诊断染色体微阵列分析或整个外显子组测序未涵盖的基因组非蛋白质编码区的重要性。

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