Iklé Jennifer M, Tavares Andre L P, King Marisol, Ding Hailei, Colombo Sophie, Firulli Beth A, Firulli Anthony B, Targoff Kimara L, Yelon Deborah, Clouthier David E
Department of Craniofacial Biology, University of Colorado Anschutz Medical Campus, Aurora, Colorado, 80045.
Division of Cardiology, Department of Pediatrics, College of Physicians and Surgeons, Columbia University, New York, 10032.
Genesis. 2017 Mar;55(3). doi: 10.1002/dvg.23021. Epub 2017 Feb 10.
In gnathostomes, dorsoventral (D-V) patterning of neural crest cells (NCC) within the pharyngeal arches is crucial for the development of hinged jaws. One of the key signals that mediate this process is Endothelin-1 (EDN1). Loss of EDN1 binding to the Endothelin-A receptor (EDNRA) results in loss of EDNRA signaling and subsequent facial birth defects in humans, mice and zebrafish. A rate-limiting step in this crucial signaling pathway is the conversion of immature EDN1 into a mature active form by Endothelin converting enzyme-1 (ECE1). However, surprisingly little is known about how Ece1 transcription is induced or regulated. We show here that Nkx2.5 is required for proper craniofacial development in zebrafish and acts in part by upregulating ece1 expression. Disruption of nkx2.5 in zebrafish embryos results in defects in both ventral and dorsal pharyngeal arch-derived elements, with changes in ventral arch gene expression consistent with a disruption in Ednra signaling. ece1 mRNA rescues the nkx2.5 morphant phenotype, indicating that Nkx2.5 functions through modulating Ece1 expression or function. These studies illustrate a new function for Nkx2.5 in embryonic development and provide new avenues with which to pursue potential mechanisms underlying human facial disorders.
在有颌类动物中,咽弓内神经嵴细胞(NCC)的背腹(D-V)模式对于铰接式颌骨的发育至关重要。介导这一过程的关键信号之一是内皮素-1(EDN1)。EDN1与内皮素-A受体(EDNRA)结合的丧失会导致人类、小鼠和斑马鱼中EDNRA信号传导的丧失以及随后的面部出生缺陷。在这一关键信号通路中,一个限速步骤是内皮素转换酶-1(ECE1)将未成熟的EDN1转化为成熟的活性形式。然而,令人惊讶的是,关于Ece1转录是如何被诱导或调控的,人们所知甚少。我们在此表明,Nkx2.5是斑马鱼正常颅面发育所必需的,并且部分通过上调ece1表达发挥作用。斑马鱼胚胎中nkx2.5的破坏导致腹侧和背侧咽弓衍生元件均出现缺陷,腹侧弓基因表达的变化与Ednra信号传导的破坏一致。ece1 mRNA挽救了nkx2.5 morphant表型,表明Nkx2.5通过调节Ece1表达或功能发挥作用。这些研究阐明了Nkx2.5在胚胎发育中的新功能,并为探索人类面部疾病潜在机制提供了新途径。