Miller Craig T, Swartz Mary E, Khuu Patricia A, Walker Macie B, Eberhart Johann K, Kimmel Charles B
Institute of Neuroscience, 1254 University of Oregon, Eugene, OR 97403, USA.
Dev Biol. 2007 Aug 1;308(1):144-57. doi: 10.1016/j.ydbio.2007.05.018. Epub 2007 May 24.
Mef2 genes encode highly conserved transcription factors involved in somitic and cardiac mesoderm development in diverse bilaterians. Vertebrates have multiple mef2 genes. In mice, mef2c is required for heart and vascular development. We show that a zebrafish mef2c gene (mef2ca) is required in cranial neural crest (CNC) for proper head skeletal patterning. mef2ca mutants have head skeletal phenotypes resembling those seen upon partial loss-of-function of endothelin1 (edn1). Furthermore, mef2ca interacts genetically with edn1, arguing that mef2ca functions within the edn1 pathway. mef2ca is expressed in CNC and this expression does not require edn1 signaling. Mosaic analyses reveal that mef2ca is required in CNC for pharyngeal skeletal morphogenesis. Proper expression of many edn1-dependent target genes including hand2, bapx1, and gsc, depends upon mef2ca function. mef2ca plays a critical role in establishing the proper nested expression patterns of dlx genes. dlx5a and dlx6a, known Edn1 targets, are downregulated in mef2ca mutant pharyngeal arch CNC. Surprisingly, dlx4b and dlx3b are oppositely affected in mef2ca mutants. dlx4b expression is abolished while the edn1-dependent dlx3b is ectopically expressed in more dorsal CNC. Together our results support a model in which CNC cells require mef2ca downstream of edn1 signaling for proper craniofacial development.
Mef2基因编码高度保守的转录因子,参与多种两侧对称动物的体节和心脏中胚层发育。脊椎动物有多个mef2基因。在小鼠中,mef2c对心脏和血管发育是必需的。我们发现斑马鱼的mef2c基因(mef2ca)在颅神经嵴(CNC)中对头骨的正确模式形成是必需的。mef2ca突变体的头骨表型类似于内皮素1(edn1)部分功能丧失时所观察到的表型。此外,mef2ca与edn1发生遗传相互作用,表明mef2ca在内皮素1信号通路中发挥作用。mef2ca在CNC中表达,且这种表达不需要edn1信号传导。镶嵌分析表明,mef2ca在CNC中对咽骨骼形态发生是必需的。许多依赖edn1的靶基因,包括hand2、bapx1和gsc的正确表达,取决于mef2ca的功能。mef2ca在建立dlx基因的正确嵌套表达模式中起关键作用。已知的Edn1靶基因dlx5a和dlx6a在mef2ca突变体的咽弓CNC中表达下调。令人惊讶的是,dlx4b和dlx3b在mef2ca突变体中受到相反的影响。dlx4b的表达被消除,而依赖edn1的dlx3b在更靠背侧的CNC中异位表达。我们的结果共同支持了一个模型,即CNC细胞在edn1信号下游需要mef2ca来实现正常的颅面发育。