...
首页> 外文期刊>Cell death & disease. >Salvador–Warts–Hippo pathway regulates sensory organ development via caspase-dependent nonapoptotic signaling
【24h】

Salvador–Warts–Hippo pathway regulates sensory organ development via caspase-dependent nonapoptotic signaling

机译:Salvador-Warts-Hippo途径通过Caspase依赖性的非致电信号调节感官器官开发

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The fundamental roles for the Salvador-Warts-Hippo (SWH) pathway are widely characterized in growth regulation and organ size control. However, the function of SWH pathway is less known in cell fate determination. Here we uncover a novel role of the SWH signaling pathway in determination of cell fate during neural precursor (sensory organ precursor, SOP) development. Inactivation of the SWH pathway in SOP of the wing imaginal discs affects caspase-dependent bristle patterning in an apoptosis-independent process. Such nonapoptotic functions of caspases have been implicated in inflammation, proliferation, cellular remodeling, and cell fate determination. Our data indicate an effect on the Wingless (Wg)/Wnt pathway. Previously, caspases were proposed to cleave and activate a negative regulator of Wg/Wnt signaling, Shaggy (Sgg)/GSK3β. Surprisingly, we found that a noncleavable form of Sgg encoded from the endogenous locus after CRISPR-Cas9 modification supported almost normal bristle patterning, indicating that Sgg might not be the main target of the caspase-dependent nonapoptotic process. Collectively, our results outline a new function of SWH signaling that crosstalks to caspase-dependent nonapoptotic signaling and Wg/Wnt signaling in neural precursor development, which might be implicated in neuronal pathogenesis.
机译:Salvador-Warts-Hippo(SWH)途径的基本作用是广泛的增长调控和器官规模控制的途径。然而,SWH途径的功能在细胞命运确定中较少。在这里,我们在神经前体(感官器官前体,SOP)发育中的测定中,揭示了SWH信号传导途径的新作用。翼状椎间盘SOP中的SWH途径的灭活影响了凋亡的独立过程中的Caspase依赖性刷子图案。胱天蛋白酶的这种非血液凋亡函数涉及炎症,增殖,细胞重塑和细胞命运测定。我们的数据表示对无翼(WG)/ WNT路径的影响。以前,提出了胱天膜酶来切割并激活WG / WNT信号传导,毛茸茸的负调节剂,毛茸茸(SGG)/GSK3β。令人惊讶的是,我们发现,在CRISPR-CAS9修改后,从内源基因座支撑几乎正常的刷子图案后,从内源基因座编码的不可分解形式的SGG,表明SGG可能不是Caspase依赖性非呼吸物凋亡过程的主要目标。集体,我们的结果概述了SWH信号传导的新功能,即串联依赖于Caspase依赖性的非血小凋亡信令和神经前体发育中的WG / WNT信号传导,这可能涉及神经元发病机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号