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A morpholino-based screen to identify novel genes involved in craniofacial morphogenesis

机译:基于吗啉代的筛查,以鉴定参与颅面形态发生的新基因

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Background: The regulatory mechanisms underpinning facial development are conserved between diverse species. Therefore, results from model systems provide insight into the genetic causes of human craniofacial defects. Previously, we generated a comprehensive dataset examining gene expression during development and fusion of the mouse facial prominences. Here, we used this resource to identify genes that have dynamic expression patterns in the facial prominences, but for which only limited information exists concerning developmental function. Results: This set of ~80 genes was used for a high-throughput functional analysis in the zebrafish system using Morpholino gene knockdown technology. This screen revealed three classes of cranial cartilage phenotypes depending upon whether knockdown of the gene affected the neurocranium, viscerocranium, or both. The targeted genes that produced consistent phenotypes encoded proteins linked to transcription (meis1, meis2a, tshz2, vgll4l), signaling (pkdcc, vlk, macc1, wu:fb16h09), and extracellular matrix function (smoc2). The majority of these phenotypes were not altered by reduction of p53 levels, demonstrating that both p53-dependent and -independent mechanisms were involved in the craniofacial abnormalities. Conclusions: This Morpholino-based screen highlights new genes involved in development of the zebrafish craniofacial skeleton with wider relevance to formation of the face in other species, particularly mouse and human. Developmental Dynamics 242:817-831, 2013.
机译:背景:支撑面部发育的调节机制在不同物种之间得以保留。因此,模型系统的结果可以洞悉人类颅面缺陷的遗传原因。以前,我们生成了一个全面的数据集,用于检查小鼠面部突起的发育和融合过程中的基因表达。在这里,我们使用这种资源来识别在面部突出物中具有动态表达模式的基因,但是对于其发育功能只有有限的信息存在。结果:这组约80个基因通过Morpholino基因敲除技术用于斑马鱼系统的高通量功能分析。该筛查揭示了三类颅软骨表型,具体取决于基因的敲低是否影响了神经颅骨,内脏颅骨或两者。产生一致表型的靶向基因编码与转录(meis1,meis2a,tshz2,vgll41),信号转导(pkdcc,vlk,macc1,wu:fb16h09)和细胞外基质功能(smoc2)相关的蛋白质。这些表型中的大多数并没有因p53水平的降低而改变,这表明颅面异常涉及p53依赖性和非依赖性机制。结论:基于Morpholino的筛选突出显示了与斑马鱼颅面骨架发育有关的新基因,该基因与其他物种,尤其是小鼠和人类的面部形成有着更广泛的相关性。发展动态242:817-831,2013。

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