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成纤维细胞生长因子信号调节纤毛功能,将成纤维细胞生长因子受体 3 相关疾病——软骨发育不全症和致死性发育不良症——鉴定为纤毛病。

Regulation of ciliary function by fibroblast growth factor signaling identifies FGFR3-related disorders achondroplasia and thanatophoric dysplasia as ciliopathies.

机构信息

Department of Biology, Faculty of Medicine, Masaryk University, 62500 Brno, Czech Republic.

International Clinical Research Center, St. Anne's University Hospital, 65691 Brno, Czech Republic.

出版信息

Hum Mol Genet. 2018 Mar 15;27(6):1093-1105. doi: 10.1093/hmg/ddy031.

Abstract

Cilia project from almost every cell integrating extracellular cues with signaling pathways. Constitutive activation of FGFR3 signaling produces the skeletal disorders achondroplasia (ACH) and thanatophoric dysplasia (TD), but many of the molecular mechanisms underlying these phenotypes remain unresolved. Here, we report in vivo evidence for significantly shortened primary cilia in ACH and TD cartilage growth plates. Using in vivo and in vitro methodologies, our data demonstrate that transient versus sustained activation of FGF signaling correlated with different cilia consequences. Transient FGF pathway activation elongated cilia, while sustained activity shortened cilia. FGF signaling extended primary cilia via ERK MAP kinase and mTORC2 signaling, but not through mTORC1. Employing a GFP-tagged IFT20 construct to measure intraflagellar (IFT) speed in cilia, we showed that FGF signaling affected IFT velocities, as well as modulating cilia-based Hedgehog signaling. Our data integrate primary cilia into canonical FGF signal transduction and uncover a FGF-cilia pathway that needs consideration when elucidating the mechanisms of physiological and pathological FGFR function, or in the development of FGFR therapeutics.

摘要

纤毛从几乎每个细胞发出,将细胞外线索与信号通路整合在一起。FGFR3 信号的组成性激活会导致骨骼疾病软骨发育不全症(ACH)和致死性发育不良(TD),但这些表型背后的许多分子机制仍未解决。在这里,我们报告了 ACH 和 TD 软骨生长板中初级纤毛明显缩短的体内证据。通过体内和体外方法学,我们的数据表明,FGF 信号的瞬时激活与不同的纤毛后果相关,而持续激活则缩短了纤毛。FGF 信号通过 ERK MAP 激酶和 mTORC2 信号延长了初级纤毛,但不是通过 mTORC1。我们使用 GFP 标记的 IFT20 构建体来测量纤毛内的(IFT)速度,表明 FGF 信号影响 IFT 速度,并调节基于纤毛的 Hedgehog 信号。我们的数据将初级纤毛整合到经典的 FGF 信号转导中,并揭示了一种 FGF-纤毛途径,在阐明生理和病理 FGFR 功能的机制或开发 FGFR 治疗药物时需要考虑该途径。

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