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Crispr-Cas9 engineered osteogenesis imperfecta type V leads to severe skeletal deformities and perinatal lethality in mice

机译:CRISPR-CAS9工程骨质发生缺陷型V导致小鼠的严重骨骼畸形和围产期致死性

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Abstract Osteogenesis imperfecta (OI) type V is caused by an autosomal dominant mutation in the IFITM5 gene, also known as BRIL . The c.-14C>T mutation in the 5’UTR of BRIL creates a novel translational start site adding 5 residues (MALEP) in frame with the natural coding of BRIL. A neomorphic function has been proposed for the MALEP-BRIL but the mechanisms at play are still unknown. In order to further understand the effects of MALEP-BRIL in vivo, we generated a knockin (KI) mouse model having the exact genetic -14C>T replica of patients with OI type V. Live KI descendants were never obtained from 2 male mosaic founders. Skeletal staining with alizarin red/alcian blue and μCT imaging of KI embryos revealed striking skeletal anomalies such as hypomineralized skull, short and bent long bones, and frail and wavy ribs. Histology and histochemical labeling revealed that midshaft of long bones was filled with hypertrophic chondrocytes, lacked a defined primary ossification center with the absence of defined cortices. Gene expression monitoring at E15.5 and E17.5 showed no change in Osx but decreased Bril itself as well as other differentiated osteoblast markers ( Ibsp , Bglap , Sost ). However, upregulation of Ptgs2 and Nr4a3 suggested that a pro-inflammatory reaction was activated. Primary osteoblasts from KI calvaria showed delayed differentiation and mineralization, with decreased abundance of BRIL. However, the upregulation AdipoQ and Fabp4 in young cultures indicated a possible switch in fate towards adipogenesis. Altogether our data suggest that the low level expression of MALEP-BRIL in Osx + mesenchymal progenitors blunted their further differentiation into mature osteoblasts, which may have resulted in part from an inflammatory response. Highlights ? A knockin mouse model for osteogenesis imperfecta (OI) type V was generated using Crispr. ? The single base change introduced in the 5′UTR of Bril caused severe skeletal defects incompatible with postnatal life. ? Bones from intramembranous and endochondral origins were malformed and misshapen. ? Heterozygote expression of the mutant BRIL protein blunted osteoblastogenesis in a cell-autonomous manner. ? Gene expression monitoring identified potential contributing factors, including an inflammatory component.
机译:摘要骨质发生缺陷型(OI)型V是由IFITM5基因的常染色体显性突变引起的,也称为BRIL。 BRIL 5'UTR中的C.-14C> T突变在BRIL的自然编码中,在框架中添加了一种新的翻译启动部位。已经为Malep-Bril提出了一种新形态功能,但游戏的机制仍然未知。为了进一步了解血管生殖器在体内的影响,我们产生了具有精确遗传-14℃的敲蛋白(Ki)小鼠模型-14C> T型患者患者V. Live Ki后代从未获得2只雄性马赛克创始人。骨骼染色与茜素红/阿尔西亚蓝色和μCT成像的Ki胚胎显示出尖锐的骨骼异常,如下骨髓化的头骨,短弯长的长骨,以及虚线和波浪状肋骨。组织学和组织化学标记表明,长骨的中间填充有肥厚性软骨细胞,缺乏具有定义的皮质的缺失的初级骨化中心。 E15.5和E17.5的基因表达监测显示OSX没有变化,但对Bril本身和其他分化的成骨细胞标记物(IBSP,Bglap,SOST)缺失。然而,PTGS2和NR4A3的上调表明促炎反应被活化。来自Ki Calvaria的主要成骨细胞显示出延迟分化和矿化,降低了Bril的丰度。然而,年轻培养物中的上调adipoq和fabp4表明了对脂肪发生的命运可能的开关。我们的数据建议我们的数据在OSX +间充质祖的低水平表达钝化它们进一步分化成成熟的成骨细胞,其可以部分地从炎症反应中得到。强调 ?使用CRISPR生成骨质型胚胎型v型v型v型型v的敲门蛋白模型。还BRIL 5'UTR中引入的单一基础变化引起严重的骨骼缺陷与产后寿命不相容。还来自Intramembranous和CoincoChorlar起源的骨骼畸形和畸形。还突变体BRIL蛋白的杂合子表达以细胞 - 自主方式垂直骨质细胞发生。还基因表达监测确定了潜在的贡献因子,包括炎症组分。

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