Xing Cencan, Gong Bo, Xue Yu, Han Yanchao, Wang Yixia, Meng Anming, Jia Shunji
State Key Laboratory of Biomembrane and Membrane Engineering, Tsinghua-Peking Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing 100084, China.
State Key Laboratory of Biomembrane and Membrane Engineering, Tsinghua-Peking Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing 100084, China
J Mol Cell Biol. 2015 Feb;7(1):48-61. doi: 10.1093/jmcb/mjv004. Epub 2015 Jan 20.
The zebrafish sensory posterior lateral line (pLL) has become an attractive model for studying collective cell migration and cell morphogenesis. Recent studies have indicated that chemokine, Wnt/β-catenin, Fgf, and Delta-Notch signaling pathways participate in regulating pLL development. However, it remains unclear whether TGFβ signaling pathway is involved in pLL development. Here we report a critical role of TGFβ1 in regulating morphogenesis of the pLL primordium (pLLP). The tgfβ1a gene is abundantly expressed in the lateral line primordium. Knockdown or knockout of tgfβ1a leads to a reduction of neuromast number, an increase of inter-neuromast distance, and a reduced number of hair cells. The aberrant morphogenesis in embryos depleted of tgfβ1a correlates with the reduced expression of atoh1a, deltaA, and n-cadherin/cdh2, which are known important regulators of the pLLP morphogenesis. Like tgfβ1a depletion, knockdown of smad5 that expresses in the pLLP, affects pLLP development whereas overexpression of a constitutive active Smad5 isoform rescues the defects in embryos depleted of tgfβ1a, indicating that Smad5 mediates tgfβ1a function in pLLP development. Therefore, TGFβ/Smad5 signaling plays an important role in the zebrafish lateral line formation.
斑马鱼的感觉后侧线(pLL)已成为研究集体细胞迁移和细胞形态发生的一个有吸引力的模型。最近的研究表明,趋化因子、Wnt/β-连环蛋白、Fgf和Delta-Notch信号通路参与调节pLL的发育。然而,尚不清楚TGFβ信号通路是否参与pLL的发育。在此,我们报告了TGFβ1在调节pLL原基(pLLP)形态发生中的关键作用。tgfβ1a基因在侧线原基中大量表达。敲低或敲除tgfβ1a会导致神经丘数量减少、神经丘间距离增加以及毛细胞数量减少。tgfβ1a缺失的胚胎中异常的形态发生与atoh1a、deltaA和n-钙黏蛋白/cdh2表达的降低相关,这些都是已知的pLLP形态发生的重要调节因子。与tgfβ1a缺失一样,敲低在pLLP中表达的smad5会影响pLLP的发育,而组成型活性Smad5异构体的过表达可挽救tgfβ1a缺失胚胎中的缺陷,表明Smad5介导tgfβ1a在pLLP发育中的功能。因此,TGFβ/Smad5信号通路在斑马鱼侧线形成中起重要作用。