FGF signalling during embryo development regulates cilia length in diverse epithelia

被引:201
作者
Neugebauer, Judith M. [1 ]
Amack, Jeffrey D. [1 ]
Peterson, Annita G. [1 ]
Bisgrove, Brent W. [1 ]
Yost, H. Joseph [1 ]
机构
[1] Univ Utah, Sch Med, Dept Neurobiol & Anat, Eccles Inst Human Genet, Salt Lake City, UT 84112 USA
关键词
LEFT-RIGHT ASYMMETRY; LEFT-RIGHT AXIS; ZEBRAFISH FIN REGENERATION; KUPFFERS VESICLE; LEFTWARD FLOW; CELLS; SPECIFICATION; INHIBITION; XENOPUS; MUTANT;
D O I
10.1038/nature07753
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Cilia are cell surface organelles found on most epithelia in vertebrates. Specialized groups of cilia have critical roles in embryonic development, including left-right axis formation. Recently, cilia have been implicated as recipients of cell-cell signalling(1,2). However, little is known about cell-cell signalling pathways that control the length of cilia(3). Here we provide several lines of evidence showing that fibroblast growth factor (FGF) signalling regulates cilia length and function in diverse epithelia during zebrafish and Xenopus development. Morpholino knockdown of FGF receptor 1 (Fgfr1) in zebrafish cell-autonomously reduces cilia length in Kupffer's vesicle and perturbs directional fluid flow required for left-right patterning of the embryo. Expression of a dominant-negative FGF receptor (DN-Fgfr1), treatment with SU5402 ( a pharmacological inhibitor of FGF signalling) or genetic and morpholino reduction of redundant FGF ligands Fgf8 and Fgf24 reproduces this cilia length phenotype. Knockdown of Fgfr1 also results in shorter tethering cilia in the otic vesicle and shorter motile cilia in the pronephric ducts. In Xenopus, expression of a dn-fgfr1 results in shorter monocilia in the gastrocoel roof plate that control left-right patterning(4) and in shorter multicilia in external mucociliary epithelium. Together, these results indicate a fundamental and highly conserved role for FGF signalling in the regulation of cilia length in multiple tissues. Abrogation of Fgfr1 signalling downregulates expression of two ciliogenic transcription factors, foxj1 and rfx2, and of the intraflagellar transport gene ift88 (also known as polaris), indicating that FGF signalling mediates cilia length through an Fgf8/Fgf24-Fgfr1-intraflagellar transport pathway. We propose that a subset of developmental defects and diseases ascribed to FGF signalling are due in part to loss of cilia function.
引用
收藏
页码:651 / U119
页数:5
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