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A 3.7 Mb deletion encompassing ZEB2 causes a novel polled and multisystemic syndrome in the progeny of a somatic mosaic bull

机译:包含ZEB2的3.7 Mb缺失在体细胞花叶公牛的后代中引起新的轮询和多系统综合征

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摘要

Polled and Multisystemic Syndrome (PMS) is a novel developmental disorder occurring in the progeny of a single bull. Its clinical spectrum includes polledness (complete agenesis of horns), facial dysmorphism, growth delay, chronic diarrhea, premature ovarian failure, and variable neurological and cardiac anomalies. PMS is also characterized by a deviation of the sex-ratio, suggesting male lethality during pregnancy. Using Mendelian error mapping and whole-genome sequencing, we identified a 3.7 Mb deletion on the paternal bovine chromosome 2 encompassing ARHGAP15, GTDC1 and ZEB2 genes. We then produced control and affected 90-day old fetuses to characterize this syndrome by histological and expression analyses. Compared to wild type individuals, affected animals showed a decreased expression of the three deleted genes. Based on a comparison with human Mowat-Wilson syndrome, we suggest that deletion of ZEB2, is responsible for most of the effects of the mutation. Finally sperm-FISH, embryo genotyping and analysis of reproduction records confirmed somatic mosaicism in the founder bull and male-specific lethality during the first third of gestation. In conclusion, we identified a novel locus involved in bovid horn ontogenesis and suggest that epithelial-to-mesenchymal transition plays a critical role in horn bud differentiation. We also provide new insights into the pathogenicity of ZEB2 loss of heterozygosity in bovine and humans and describe the first case of male-specific lethality associated with an autosomal locus in a non-murine mammalian species. This result sets PMS as a unique model to study sex-specific gene expression/regulation.
机译:轮询和多系统综合症(PMS)是一种发生在单头公牛后代的新型发育障碍。它的临床范围包括轮询(角完全发育不全),面部畸形,生长延迟,慢性腹泻,卵巢早衰以及各种神经系统和心脏异常。 PMS的特征还在于性别比例的偏差,这表明在怀孕期间男性具有致命性。使用孟德尔误差图谱和全基因组测序,我们在包含ARHGAP15,GTDC1和ZEB2基因的父本牛染色体2上鉴定了3.7 Mb缺失。然后,我们进行了控制并感染了90天大的胎儿,通过组织学和表达分析来表征该综合征。与野生型个体相比,受影响的动物显示出三个缺失基因的表达降低。基于与人类Mowat-Wilson综合征的比较,我们建议删除ZEB2,是造成突变的大部分原因。最后,精子-FISH,胚胎基因分型和繁殖记录分析证实了孕育的头三分之一期间始祖公牛的体细胞镶嵌和雄性特定致死率。总之,我们确定了一个新的基因座,涉及牛角的发生,并表明上皮到间质的转变在角芽分化中起关键作用。我们还提供了对牛和人类中ZEB2杂合性丧失的致病性的新见解,并描述了与非鼠类哺乳动物常染色体位点相关的男性特异性致死率的第一例。该结果使PMS成为研究性别特异性基因表达/调控的独特模型。

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