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首页> 外文期刊>BMC Developmental Biology >Abnormal skeletal and cardiac development, cardiomyopathy, muscle atrophy and cataracts in mice with a targeted disruption of the Nov (Ccn3) gene
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Abnormal skeletal and cardiac development, cardiomyopathy, muscle atrophy and cataracts in mice with a targeted disruption of the Nov (Ccn3) gene

机译:定向破坏Nov(Ccn3)基因的小鼠骨骼和心脏发育异常,心肌病,肌肉萎缩和白内障

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摘要

Background Signals from the extracellular environment control many aspects of cell behaviour including proliferation, survival, differentiation, adhesion and migration. It is increasingly evident that these signals can be modulated by a group of matricellular proteins called the CCN family. CCN proteins have multiple domains through which they regulate the activities of a variety of signalling molecules including TGFβ, BMPs and integrins, thereby influencing a wide range of processes in development and disease. Whilst the developmental roles of CCN1 and CCN2 have been elucidated, very little is known about the function of CCN3 (NOV). To investigate this, we have generated mice carrying a targeted mutation in the Nov gene (Novdel3) which reveal for the first time its diverse functions in embryos and adults. Results By replacing Nov exon 3 with a TKneomycin cassette, we have generated Novdel3-/- mice which produce no full length NOV protein and express at a barely detectable level a mutant NOV protein that lacks the VWC domain. In Novdel3-/- embryos, and to a lesser extent in Novdel3+/- embryos, development of the appendicular and axial skeleton was affected with enlarged vertebrae, elongated long bones and digits, delayed ossification, increased bone mineralization and severe joint malformations. Primary embryo fibroblasts from Novdel3-/- mutant embryos showed enhanced chondrogenesis and osteogenesis. Cardiac development was also influenced leading to enlargement and abnormal modelling of the endocardial cushions, associated with septal defects and delayed fusion. In adults, cardiomyopathy was apparent, with hypertrophy and calcification of the septum and left ventricle dilation. Muscle atrophy was seen by 5 months of age, associated with transdifferentiation to fat. Premature tissue degeneration was also seen in the lens, with cataracts present from 6 months. Conclusion We have generated the first mice with a mutation in the Nov gene (Novdel3). Our data demonstrate that NOV is a regulator of skeletal and cardiac development, and implicates NOV in various disease processes including cardiomyopathy, muscle atrophy and cataract formation. Novdel3 mutants represent a valuable resource for studying NOV's role in the modulation and co-ordination of multiple signalling pathways that underpin organogenesis and tissue homeostasis.
机译:背景来自细胞外环境的信号控制细胞行为的许多方面,包括增殖,存活,分化,粘附和迁移。越来越明显的是,这些信号可以被称为CCN家族的一组基质细胞蛋白调节。 CCN蛋白具有多个域,通过它们可调节包括TGFβ,BMP和整联蛋白在内的各种信号分子的活性,从而影响发育和疾病的广泛过程。虽然已经阐明了CCN1和CCN2的发展作用,但对CCN3(NOV)的功能知之甚少。为了对此进行研究,我们已经生成了在Nov基因(Nov del3 )中带有目标突变的小鼠,这首次揭示了其在胚胎和成年动物中的多种功能。结果通过用TKneomycin盒替换Nov外显子3,我们产生了Nov del3 -/-小鼠,该小鼠不产生全长NOV蛋白,并且几乎无法检测到表达缺少VWC结构域的突变NOV蛋白。 。在Nov del3 -/-胚胎中,以及在较小程度上在Nov del3 +/-胚胎中,阑尾和轴骨骼的发育受椎骨增大,长而长的影响。骨骼和手指,骨化延迟,骨骼矿化增加和严重的关节畸形。 Nov del3 -/-突变胚胎的原代成纤维细胞显示出增强的软骨形成和成骨作用。心脏的发育也受到影响,导致心内膜垫的扩大和模型异常,与间隔缺损和融合延迟有关。在成年人中,心肌病是明显的,伴有肥大,隔膜钙化和左心室扩张。 5个月大时见肌肉萎缩,与脂肪转分化有关。在晶状体中也观察到过早的组织变性,并且从6个月开始出现白内障。结论我们已经产生了第一只在Nov基因(Nov del3 )中发生突变的小鼠。我们的数据表明,NOV是骨骼和心脏发育的调节剂,并且将NOV涉及各种疾病过程,包括心肌病,肌肉萎缩和白内障形成。 Nov del3 突变体是研究NOV在支持器官发生和组织动态平衡的多种信号通路的调节和协调中的重要资源。

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