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首页> 外文期刊>The American Journal of Human Genetics >TTC25 Deficiency Results in Defects of the Outer Dynein Arm Docking Machinery and Primary Ciliary Dyskinesia with Left-Right Body Asymmetry Randomization
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TTC25 Deficiency Results in Defects of the Outer Dynein Arm Docking Machinery and Primary Ciliary Dyskinesia with Left-Right Body Asymmetry Randomization

机译:TTC25缺陷导致左手动力不对称随机对接机械和原发性睫状运动障碍的缺陷。

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摘要

Multiprotein complexes referred to as outer dynein arms (ODAs) develop the main mechanical force to generate the ciliary and flagellar beat. ODA defects are the most common cause of primary ciliary dyskinesia (PCD), a congenital disorder of ciliary beating, characterized by recurrent infections of the upper and lower airways, as well as by progressive lung failure and randomization of left-right body asymmetry. Using a whole-exome sequencing approach, we identified recessive loss-of-function mutations within TTC25 in three individuals from two unrelated families affected by PCD. Mice generated by CRISPR/Cas9 technology and carrying a deletion of exons 2 and 3 in Ttc25 presented with laterality defects. Consistently, we observed immotile nodal cilia and missing leftward flow via particle image velocimetry. Furthermore, transmission electron microscopy (TEM) analysis in TTC25-deficient mice revealed an absence of ODAs. Consistent with our findings in mice, we were able to show loss of the ciliary ODAs in humans via TEM and immunofluorescence (IF) analyses. Additionally, IF analyses revealed an absence of the ODA docking complex (ODA-DC), along with its known components CCDC114, CCDC151, and ARMC4. Co-immunoprecipitation revealed interaction between the ODA-DC component CCDC114 and TTC25. Thus, here we report TTC25 as a new member of the ODA-DC machinery in humans and mice.
机译:多蛋白复合物被称为外达因臂(ODA),产生主要的机械力以产生睫状和鞭毛搏动。 ODA缺陷是原发性睫状运动障碍(PCD)的最常见原因,PCD是一种先天性睫状跳动疾病,其特征是反复感染上,下呼吸道,进行性肺衰竭和左右身体不对称性随机化。使用全外显子组测序方法,我们从两个受PCD影响的无关家庭中的三个个体中,确定了TTC25内的隐性功能丧失突变。由CRISPR / Cas9技术产生的小鼠,在Ttc25中带有外显子2和3的缺失,存在侧向缺陷。一致地,我们通过粒子图像测速法观察到了不活动的结节纤毛和缺少的左向血流。此外,在TTC25缺陷型小鼠中的透射电子显微镜(TEM)分析显示没有ODA。与我们在小鼠中的发现一致,我们能够通过TEM和免疫荧光(IF)分析显示出人类睫状ODA的丢失。此外,IF分析表明,缺少ODA对接结构(ODA-DC)及其已知组件CCDC114,CCDC151和ARMC4。免疫共沉淀揭示了ODA-DC成分CCDC114和TTC25之间的相互作用。因此,在这里我们将TTC25报告为人和小鼠ODA-DC机制的新成员。

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