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经典Wnt信号通路对MAP3K1表达和JNK活性的抑制作用。

Repression of MAP3K1 expression and JNK activity by canonical Wnt signaling.

作者信息

Meng Qinghang, Mongan Maureen, Wang Jingjing, Xia Ying

机构信息

Department of Environmental Health, University of Cincinnati, College of Medicine, Cincinnati, OH, USA.

Department of Environmental Health, University of Cincinnati, College of Medicine, Cincinnati, OH, USA.

出版信息

Dev Biol. 2018 Aug 15;440(2):129-136. doi: 10.1016/j.ydbio.2018.05.008. Epub 2018 May 19.

Abstract

Morphogenesis is a complex and highly coordinated process orchestrated by temporal spatial activity of developmental pathways. How the different pathways interact to guide the developmental program remains an intriguing and open question. MAP3K1-JNK and Wnt are signaling pathways crucial for embryonic eyelid closure, an epithelial morphogenetic event conserved in mammals. Here we used a mouse model of eyelid development and genetic and biochemistry tools to investigate the relationships between the two pathways. We found that Wnt activation repressed MAP3K1 expression. Using Axin-LacZ reporter mice, spatial Wnt activity was detected in the leading edge of the developing eyelid. Conditional knockout of Wntless (Wls) in ocular surface ectoderm blocked eyelid formation, and significantly increased MAP3K1 expression in eyelid cells at the nasal canthus region. Conversely, knockout of Dkk2, encoding a canonical Wnt antagonist, resulted in an increase of Wnt activity in cells at the upper eyelid margin near the nasal canthus. Up-regulation of Wnt signaling in the Dkk2-knockout embryos corresponded to down-regulation of MAP3K1 expression. In vitro data showed that Wnt3a treatment decreased MAP3K1 promoter activity, whereas activation of Wnt by lithium chloride inhibited MAP3K1 expression, and attenuated MAP3K1-mediated JNK activity. Our data identify a unique signal crosstalk between Wnt signaling and the MAP3K1-JNK pathway in epithelial morphogenesis.

摘要

形态发生是一个由发育途径的时空活动精心编排的复杂且高度协调的过程。不同途径如何相互作用以指导发育程序仍然是一个引人入胜的开放性问题。MAP3K1-JNK和Wnt是对胚胎眼睑闭合至关重要的信号通路,这是一种在哺乳动物中保守的上皮形态发生事件。在这里,我们使用眼睑发育的小鼠模型以及遗传学和生物化学工具来研究这两条途径之间的关系。我们发现Wnt激活会抑制MAP3K1的表达。使用Axin-LacZ报告基因小鼠,在发育中的眼睑前缘检测到了空间Wnt活性。眼表外胚层中Wntless(Wls)的条件性敲除阻止了眼睑形成,并显著增加了鼻泪管区域眼睑细胞中MAP3K1的表达。相反,编码经典Wnt拮抗剂的Dkk2的敲除导致鼻泪管附近上眼睑边缘细胞中Wnt活性增加。Dkk2敲除胚胎中Wnt信号的上调与MAP3K1表达的下调相对应。体外数据表明,Wnt3a处理降低了MAP3K1启动子活性,而氯化锂激活Wnt则抑制了MAP3K1的表达,并减弱了MAP3K1介导的JNK活性。我们的数据确定了上皮形态发生中Wnt信号与MAP3K1-JNK途径之间独特的信号串扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e6f/5997573/ee614ed94b35/nihms970586f1.jpg

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