首页> 外文期刊>The American Journal of Human Genetics >Ciliary abnormalities due to defects in the retrograde transport protein DYNC2H1 in short-rib polydactyly syndrome.
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Ciliary abnormalities due to defects in the retrograde transport protein DYNC2H1 in short-rib polydactyly syndrome.

机译:短肋多指综合征中逆行转运蛋白DYNC2H1缺陷引起的睫状畸形。

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摘要

The short-rib polydactyly (SRP) syndromes are a heterogeneous group of perinatal lethal skeletal disorders with polydactyly and multisystem organ abnormalities. Homozygosity by descent mapping in a consanguineous SRP family identified a genomic region that contained DYNC2H1, a cytoplasmic dynein involved in retrograde transport in the cilium. Affected individuals in the family were homozygous for an exon 12 missense mutation that predicted the amino acid substitution R587C. Compound heterozygosity for one missense and one null mutation was identified in two additional nonconsanguineous SRP families. Cultured chondrocytes from affected individuals showed morphologically abnormal, shortened cilia. In addition, the chondrocytes showed abnormal cytoskeletal microtubule architecture, implicating an altered microtubule network as part of the disease process. These findings establish SRP as a cilia disorder and demonstrate that DYNC2H1 is essential for skeletogenesis and growth.
机译:短肋多指(SRP)综合征是围生期致死性骨骼疾病的异质性组,具有多指和多系统器官异常。通过血缘SRP家族中的血统映射进行纯合鉴定,确定了一个基因组区域,该区域含有DYNC2H1,DYNC2H1是一种参与纤毛逆行转运的细胞质动力蛋白。该家族中受影响的个体是外显子12错义突变的纯合子,该突变预测了氨基酸取代R587C。在另外两个非血缘SRP家族中发现了一种错义和一个无效突变的复合杂合性。受感染个体的软骨细胞在形态上异常,纤毛变短。另外,软骨细胞显示出异常的细胞骨架微管结构,暗示了微管网络的改变是疾病过程的一部分。这些发现将SRP确立为纤毛疾病,并证明DYNC2H1对骨骼生成和生长至关重要。

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