首页> 美国卫生研究院文献>American Journal of Human Genetics >WDR34 Mutations that Cause Short-Rib Polydactyly Syndrome Type III/Severe Asphyxiating Thoracic Dysplasia Reveal a Role for the NF-κB Pathway in Cilia
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WDR34 Mutations that Cause Short-Rib Polydactyly Syndrome Type III/Severe Asphyxiating Thoracic Dysplasia Reveal a Role for the NF-κB Pathway in Cilia

机译:WDR34突变导致III型短肋多态综合征/严重窒息性胸廓发育不良揭示纤毛中NF-κB通路的作用。

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摘要

Short-rib polydactyly (SRP) syndrome type III, or Verma-Naumoff syndrome, is an autosomal-recessive chondrodysplasia characterized by short ribs, a narrow thorax, short long bones, an abnormal acetabulum, and numerous extraskeletal malformations and is lethal in the perinatal period. Presently, mutations in two genes, IFT80 and DYNC2H1, have been identified as being responsible for SRP type III. Via homozygosity mapping in three affected siblings, a locus for the disease was identified on chromosome 9q34.11, and homozygosity for three missense mutations in WDR34 were found in three independent families, as well as compound heterozygosity for mutations in one family. WDR34 encodes a member of the WD repeat protein family with five WD40 domains, which acts as a TAK1-associated suppressor of the IL-1R/TLR3/TLR4-induced NF-κB activation pathway. We showed, through structural modeling, that two of the three mutations altered specific structural domains of WDR34. We found that primary cilia in WDR34 mutant fibroblasts were significantly shorter than normal and had a bulbous tip. This report expands on the pathogenesis of SRP type III and demonstrates that a regulator of the NF-κB activation pathway is involved in the pathogenesis of the skeletal ciliopathies.
机译:III型短肋多发性综合征(SRP)或Verma-Naumoff综合征是常染色体隐性软骨发育不良,其特征是肋骨短,胸部狭窄,长骨短,髋臼异常以及许多骨骼外畸形,在围产期致死期。目前,已确定IFT80和DYNC2H1这两个基因的突变是造成SRP III型的原因。通过在三个受影响兄弟姐妹中进行纯合性作图,在9q34.11号染色体上确定了该疾病的基因座,并在三个独立的家族中发现了WDR34中三个错义突变的纯合性,以及在一个家族中发现了复合杂合性。 WDR34编码具有五个WD40域的WD重复蛋白家族的成员,该域充当TAK1相关的IL-1R / TLR3 / TLR4诱导的NF-κB激活途径的抑制剂。通过结构建模,我们显示了三个突变中的两个改变了WDR34的特定结构域。我们发现,WDR34突变型成纤维细胞中的原发纤毛明显比正常人短,并且具有球根尖。该报告扩展了SRP III型的发病机理,并证明了NF-κB激活途径的调节剂参与了骨骼肌纤毛病的发病机理。

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