Hu Jianxin, Verzi Michael P, Robinson Ashley S, Tang Paul Ling-Fung, Hua Lisa L, Xu Shan-Mei, Kwok Pui-Yan, Black Brian L
Cardiovascular Research Institute, University of California, San Francisco, CA 94143, USA.
Cardiovascular Research Institute, University of California, San Francisco, CA 94143, USA Department of Dermatology, University of California, San Francisco, CA 94143, USA.
Development. 2015 Aug 15;142(16):2775-80. doi: 10.1242/dev.126391. Epub 2015 Jul 9.
Endothelin signaling is essential for neural crest development, and dysregulated Endothelin signaling is associated with several neural crest-related disorders, including Waardenburg and other syndromes. However, despite the crucial roles of this pathway in neural crest development and disease, the transcriptional effectors directly activated by Endothelin signaling during neural crest development remain incompletely elucidated. Here, we establish that the MADS box transcription factor MEF2C is an immediate downstream transcriptional target and effector of Endothelin signaling in the neural crest. We show that Endothelin signaling activates Mef2c expression in the neural crest through a conserved enhancer in the Mef2c locus and that CRISPR-mediated deletion of this Mef2c neural crest enhancer from the mouse genome abolishes Endothelin induction of Mef2c expression. Moreover, we demonstrate that Endothelin signaling activates neural crest expression of Mef2c by de-repressing MEF2C activity through a Calmodulin-CamKII-histone deacetylase signaling cascade. Thus, these findings identify a MEF2C-dependent, positive-feedback mechanism for Endothelin induction and establish MEF2C as an immediate transcriptional effector and target of Endothelin signaling in the neural crest.
内皮素信号传导对于神经嵴发育至关重要,而内皮素信号传导失调与多种神经嵴相关疾病有关,包括瓦登伯革氏症和其他综合征。然而,尽管该信号通路在神经嵴发育和疾病中起着关键作用,但在神经嵴发育过程中由内皮素信号直接激活的转录效应因子仍未完全阐明。在此,我们确定MADS盒转录因子MEF2C是神经嵴中内皮素信号的直接下游转录靶点和效应因子。我们表明,内皮素信号通过Mef2c基因座中的保守增强子激活神经嵴中的Mef2c表达,并且从小鼠基因组中通过CRISPR介导删除该Mef2c神经嵴增强子可消除内皮素对Mef2c表达的诱导作用。此外,我们证明内皮素信号通过钙调蛋白 - CamKII - 组蛋白脱乙酰酶信号级联去抑制MEF2C活性来激活神经嵴中Mef2c的表达。因此,这些发现确定了一种内皮素诱导的MEF2C依赖性正反馈机制,并将MEF2C确立为神经嵴中内皮素信号的直接转录效应因子和靶点。