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首页> 外文期刊>Human Molecular Genetics >The ciliary EVC/EVC2 complex interacts with smo and controls hedgehog pathway activity in chondrocytes by regulating Sufu/Gli3 dissociation and Gli3 trafficking in primary cilia
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The ciliary EVC/EVC2 complex interacts with smo and controls hedgehog pathway activity in chondrocytes by regulating Sufu/Gli3 dissociation and Gli3 trafficking in primary cilia

机译:睫状体EVC / EVC2复合物与SMO相互作用,通过调节Sufu / Gli3解离和Gli3贩运在原发性纤毛的贩运中对软骨细胞中的刺猬途径活性进行相互作用

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摘要

Hedgehog (Hh) signaling is involved in patterning and morphogenesis of most organs in the developing mammalian embryo. Despite many advances in understanding core components of the pathway, little is known about how the activity of the Hh pathway is adjusted in organ- and tissue-specific developmental processes. Mutations in EVC or EVC2 disrupt Hh signaling in tooth and bone development. Using mouse models, we show here that Evc and Evc2 are mutually required for localizing to primary cilia and also for maintaining their normal protein levels. Consistent with Evc and Evc2 functioning as a complex, the skeletal phenotypes in either single or double homozygous mutant mice are virtually indistinguishable. Smo translocation to the cilium was normal in Evc2-deficient chondrocytes following Hh activation with the Smo-agonist SAG. However, Gli3 recruitment to cilia tips was reduced and Sufu/Gli3 dissociation was impaired. Interestingly, we found Smo to co-precipitate with Evc/Evc2, indicating that in some cells Hh signaling requires direct interaction of Smo with the Evc/Evc2 complex. Expression of a dominantly acting Evc2 mutation previously identified in Weyer's acrodental dysostosis (Evc2??43) caused mislocalization of Evc/Evc2??43 within the cilium and also reproduced the Gli3-related molecular defects observed in Evc2-/- chondrocytes. Moreover, Evc silencing in Sufu-/- cells attenuated the output of the Hh pathway, suggesting that Evc/Evc2 also promote Hh signaling in the absence of Sufu. Together our data reveal that the Hh pathway involves Evc/Evc2-dependent modulations that are necessary for normal endochondral bone formation. ? The Author 2012. Published by Oxford University Press. All rights reserved.
机译:刺猬(HH)信号传导涉及开发哺乳动物胚胎中大多数器官的图案化和形态发生。尽管在理解途径的核心组分方面存在许多进展,但关于如何在机组和组织特异性发育过程中调整HH途径的活性的知之甚少。 EVC或EVC2中的突变破坏HH信号,在牙齿和骨骼发育中。使用鼠标模型,我们在此显示EVC和EVC2是对原发性纤毛的定位等的相互需要,也可以维持其正常蛋白质水平。与EVC和EVC2的功能一致,单一或双纯合突变小鼠中的骨骼表型几乎无法区分。在HH激活后,在EVC2缺陷的软骨细胞中,在EVC2缺乏的软骨细胞中,SMO易位是正常的。然而,GLI3招募纤毛尖端减少,损害了SUFU / GLI3解离。有趣的是,我们发现SMO与EVC / EVC2共沉淀出来,表明在一些细胞中,HH信号传导需要与EVC / EVC2复合物的SMO直接相互作用。先前鉴定在冬尔的仇恨缺血剂(EVC2-43)中鉴定的一种突出的EVC2突变的表达导致纤毛中的EVC / EVC2 43的错误计算,并在EVC2 - / - 软骨细胞中复制了观察到的GLI3相关分子缺陷。此外,SUFU / - 细胞中的EVC沉默衰减了HH途径的输出,表明EVC / EVC2也在没有SUFU的情况下促进HH信号。我们的数据一起揭示了HH途径涉及常规内胆骨形成所需的EVC / EVC2依赖性调节。还作者2012.牛津大学出版社出版。版权所有。

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  • 来源
    《Human Molecular Genetics》 |2013年第1期|共16页
  • 作者单位

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029;

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029 Spain;

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029;

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029 Spain;

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029 Spain;

    Grupo de investigación en Perinatología Instituto de Investigación Sanitaria Hospital La Fe;

    Sección de Genética Clínica Hospital Sant Joan de Deu Barcelona Spain;

    CIBERER Instituto de Salud Carlos III 28029 Madrid Spain Instituto de Genética Médica y;

    Institute of Genetic Medicine Newcastle University Central Parkway Newcastle upon Tyne NE1 3BZ;

    Institute of Genetic Medicine Newcastle University Central Parkway Newcastle upon Tyne NE1 3BZ;

    Instituto de Investigaciones Biomédicas de Madrid (CSIC-UAM) Arturo Duperier 4 Madrid 28029;

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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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