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首页> 外文期刊>Human Molecular Genetics >Dynll1 is essential for development and promotes endochondral bone formation by regulating intraflagellar dynein function in primary cilia
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Dynll1 is essential for development and promotes endochondral bone formation by regulating intraflagellar dynein function in primary cilia

机译:Dynll1对于发育至关重要,通过调节原发性纤毛的尿造际Dynein功能来促进内骨形成

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摘要

Mutations in subunits of the cilia-specific cytoplasmic dynein-2 (CD2) complex cause short-rib thoracic dystrophy syndromes (SRTDs), characterized by impaired bone growth and life-threatening perinatal respiratory complications. Different SRTD mutations result in varying disease severities. It remains unresolved whether this reflects the extent of retained hypomorphic protein functions or relative importance of the affected subunits for the activity of the CD2 holoenzyme. To define the contribution of the LC8-type dynein light chain subunit to the CD2 complex, we have generated Dynll1-deficient mouse strains, including the first-ever conditional knockout (KO) mutant for any CD2 subunit. Germline Dynll1 KO mice exhibit a severe ciliopathy-like phenotype similar to mice lacking another CD2 subunit, Dync2li1. Limb mesoderm-specific loss of Dynll1 results in severe bone shortening similar to human SRTD patients. Mechanistically, loss of Dynll1 leads to a partial depletion of other SRTD-related CD2 subunits, severely impaired retrograde intra-flagellar transport, significant thickening of primary cilia and cilia signaling defects. Interestingly, phenotypes of Dynll1-deficient mice are very similar to entirely cilia-deficient Kif3a/Ift88-null mice, except that they never present with polydactyly and retain relatively higher signaling outputs in parts of the hedgehog pathway. Compared to complete loss of Dynll1, maintaining very low DYNLL1 levels in mice lacking the Dynll1-transcription factor ASCIZ (ATMIN) results in significantly attenuated phenotypes and improved CD2 protein levels. The results suggest that primary cilia can maintain some functionality in the absence of intact CD2 complexes and provide a viable animal model for the analysis of the underlying bone development defects of SRTDs.
机译:纤毛特异性细胞质Dynein-2(CD2)复合物的亚基中的突变导致短肋胸营养不良综合征(SRTD),其特征在于骨生长受损和危及生命的围产期呼吸并发症。不同的SRTD突变导致不同的疾病严重程度。它仍未解决,这是否反映了保留的低晶蛋白功能或受影响亚基对CD2全酶活性的相对重要性的程度。为了定义LC8型Dynein轻链亚基对CD2复合物的贡献,我们产生了Dynll1缺陷的小鼠菌株,包括任何CD2亚基的第一有条件敲除(KO)突变体。种系Dynll1 KO小鼠表现出类似于缺乏另一种CD2亚基DynC2Li1的小鼠的严重的皮利病样表型。 Dynll1的肢体中胚层的损失导致与人类SRTD患者相似的严重骨骼缩短。机械地,Dynll1的损失导致其他与突破性相关的CD2亚基的部分耗尽,逆行鞭毛内传输严重受损,原发性纤毛和纤毛信号传导缺陷的显着增厚。有趣的是,Dynll1缺陷小鼠的表型与完全纤毛的KIF3A / IFT88-NULL小鼠非常相似,不同之处在于它们从未存在于多透明度并保留在刺猬途径的部分中的相对较高的信令输出。与Dyn11的完全丧失相比,维持缺乏Dynll1转录因子Asciz(ATMIN)的小鼠中的非常低的Dynll1水平导致显着减弱的表型和改善的CD2蛋白水平。结果表明,原发性纤毛可以在没有完整的CD2复合物的情况下维持一些功能,并为分析SRTD的潜在骨开发缺陷提供可行的动物模型。

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  • 来源
    《Human Molecular Genetics》 |2019年第15期|共16页
  • 作者单位

    St Vincents Inst Med Res 9 Princes St Fitzroy Vic 3065 Australia;

    St Vincents Inst Med Res 9 Princes St Fitzroy Vic 3065 Australia;

    St Vincents Inst Med Res 9 Princes St Fitzroy Vic 3065 Australia;

    St Vincents Inst Med Res 9 Princes St Fitzroy Vic 3065 Australia;

    Monash Univ Monash Biomed Discovery Inst Dept Anat &

    Dev Biol Clayton Vic 3080 Australia;

    St Vincents Inst Med Res 9 Princes St Fitzroy Vic 3065 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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