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Primary Ciliary Dyskinesia Caused by Homozygous Mutation in DNAL1, Encoding Dynein Light Chain 1

机译:由编码Dynein轻链1 DNAL1中的纯合突变引起的原发性睫状运动障碍。

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摘要

In primary ciliary dyskinesia (PCD), genetic defects affecting motility of cilia and flagella cause chronic destructive airway disease, randomization of left-right body asymmetry, and, frequently, male infertility. The most frequent defects involve outer and inner dynein arms (ODAs and IDAs) that are large multiprotein complexes responsible for cilia-beat generation and regulation, respectively. Although it has long been suspected that mutations in DNAL1 encoding the ODA light chain1 might cause PCD such mutations were not found. We demonstrate here that a homozygous point mutation in this gene is associated with PCD with absent or markedly shortened ODA. The mutation (NM_031427.3: c.449A>G; p.Asn150Ser) changes the Asn at position150, which is critical for the proper tight turn between the β strand and the α helix of the leucine-rich repeat in the hydrophobic face that connects to the dynein heavy chain. The mutation reduces the stability of the axonemal dynein light chain 1 and damages its interactions with dynein heavy chain and with tubulin. This study adds another important component to understanding the types of mutations that cause PCD and provides clinical information regarding a specific mutation in a gene not yet known to be associated with PCD.
机译:在原发性睫状运动障碍(PCD)中,影响纤毛和鞭毛运动的遗传缺陷会导致慢性破坏性气道疾病,左右身体不对称现象的随机发生以及男性不育症的发生。最常见的缺陷涉及外部和内部的达因臂(ODA和IDA),它们分别是负责纤毛节律产生和调节的大型多蛋白复合物。尽管长期以来一直怀疑编码ODA轻链1的DNAL1中的突变可能导致PCD,但并未发现此类突变。我们在这里证明该基因中的纯合点突变与缺少或显着缩短的ODA的PCD有关。突变(NM_031427.3:c.449A> G; p.Asn150Ser)改变了位置150的Asn,这对于疏水链中富含亮氨酸的重复序列的β链和α螺旋之间的正确紧密转弯至关重要,连接至动力蛋白重链。该突变降低了轴突动力蛋白轻链1的稳定性,并破坏了其与动力蛋白重链和微管蛋白的相互作用。这项研究为理解导致PCD的突变类型增加了另一个重要组成部分,并提供了有关尚未与PCD相关的基因中特定突变的临床信息。

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