首页> 外文期刊>European journal of human genetics: EJHG >Homozygous missense and nonsense mutations in BMPR1B cause acromesomelic chondrodysplasia-type Grebe
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Homozygous missense and nonsense mutations in BMPR1B cause acromesomelic chondrodysplasia-type Grebe

机译:BMPR1B的纯合错义和无意义突变导致顶体软骨发育不良型格里布

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摘要

Acromesomelic chondrodysplasias (ACDs) are characterized by disproportionate shortening of the appendicular skeleton, predominantly affecting the middle (forearms and forelegs) and distal segments (hands and feet). Here, we present two consanguineous families with missense (c.157T>C, p.(C53R)) or nonsense (c.657G>A, p.(W219*)) mutations in BMPR1B. Homozygous affected individuals show clinical and radiographic findings consistent with ACD-type Grebe. Functional analysis of the missense mutation C53R revealed that the mutated receptor was partially located at the cell membrane. In contrast to the wild-type receptor, C53R mutation hindered the activation of the receptor by its ligand GDF5, as shown by reporter gene assay. Further, overexpression of the C53R mutation in an in vitro chondrogenesis assay showed no effect on cell differentiation, indicating a loss of function. The nonsense mutation (c.657G>A, p.(W219*)) introduces a premature stop codon, which is predicted to be subject to nonsense-mediated mRNA decay, causing reduced protein translation of the mutant allele. A loss-of-function effect of both mutations causing recessive ACD-type Grebe is further supported by the mild brachydactyly or even non-penetrance of these mutations observed in the heterozygous parents. In contrast, dominant-negative BMPR1B mutations described previously are associated with autosomal-dominant brachydactyly-type A2.
机译:质体性软骨发育不良(ACD)的特征是阑尾骨骼的缩短不成比例,主要影响中部(前臂和前肢)和远端(手和脚)。在这里,我们介绍了两个近亲家族,它们在BMPR1B中具有错义(c.157T> C,p。(C53R))或无义(c.657G> A,p。(W219 *))突变。受纯合子影响的个体显示出与ACD型Grebe一致的临床和影像学发现。对错义突变C53R的功能分析表明,突变的受体部分位于细胞膜上。与野生型受体相反,C53R突变阻碍了受体配体GDF5的​​激活,如报告基因测定所示。此外,在体外软骨形成测定中C53R突变的过表达对细胞分化没有影响,表明功能丧失。无义突变(c.657G> A,p。(W219 *))引入了一个提前终止密码子,预计该密码子会发生无义介导的mRNA衰变,从而导致突变等位基因的蛋白质翻译减少。在杂合子亲本中观察到的这些突变的轻度近距离接触或什至不渗透进一步支持了引起隐性ACD型Grebe的两个突变的功能丧失作用。相反,先前描述的显性负性BMPR1B突变与常染色体显性近距离触觉型A2相关。

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