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首页> 外文期刊>Human Molecular Genetics >Functional analysis of a hypomorphic allele shows that MMP14 catalytic activity is the prime determinant of the Winchester syndrome phenotype
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Functional analysis of a hypomorphic allele shows that MMP14 catalytic activity is the prime determinant of the Winchester syndrome phenotype

机译:雄性等位基因的功能分析表明,MMP14催化活性是温彻斯特综合征表型的主要决定因素

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摘要

Winchester syndrome (WS, MIM #277950) is an extremely rare autosomal recessive skeletal dysplasia characterized by progressive joint destruction and osteolysis. To date, only one missense mutation in MMP14, encoding the membrane-bound matrix metalloprotease 14, has been reported in WS patients. Here, we report a novel hypomorphic MMP14 p.Arg111His (R111H) allele, associated with a mitigated form of WS. Functional analysis demonstrated that this mutation, in contrast to previously reported human and murine MMP14 mutations, does not affect MMP14's transport to the cell membrane. Instead, it partially impairs MMP14's proteolytic activity. This residual activity likely accounts for the mitigated phenotype observed in our patients. Based on our observations as well as previously published data, we hypothesize that MMP14's catalytic activity is the prime determinant of disease severity. Given the limitations of our in vitro assays in addressing the consequences of MMP14 dysfunction, we generated a novel mmp14a/b knockout zebrafish model. The fish accurately reflected key aspects of the WS phenotype including craniofacial malformations, kyphosis, short-stature and reduced bone density owing to defective collagen remodeling. Notably, the zebrafish model will be a valuable tool for developing novel therapeutic approaches to a devastating bone disorder.
机译:温彻斯特综合征(WS,MIM#277950)是一种极为罕见的常染色体隐性骨骼发育不良,以进行性关节破坏和骨溶解为特征。迄今为止,在WS患者中仅报告了编码膜结合基质金属蛋白酶14的MMP14中的一个错义突变。在这里,我们报告了一个新的亚型MMP14 p.Arg111His(R111H)等位基因,该等位基因与WS的缓解形式有关。功能分析表明,与之前报道的人类和小鼠MMP14突变相比,该突变不影响MMP14向细胞膜的转运。相反,它会部分损害MMP14的蛋白水解活性。这种残余活性可能是我们在患者中观察到的缓解表型的原因。根据我们的观察结果以及之前发表的数据,我们假设MMP14的催化活性是疾病严重程度的主要决定因素。鉴于我们的体外实验在解决MMP14功能障碍后果方面的局限性,我们构建了一种新型的mmp14a/b敲除斑马鱼模型。fish准确地反映了WS表型的关键方面,包括颅面畸形、脊柱后凸、身材矮小以及由于胶原重塑缺陷导致的骨密度降低。值得注意的是,斑马鱼模型将是一个有价值的工具,用于开发治疗破坏性骨骼疾病的新方法。

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