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Sox2 marks epithelial competence to generate teeth in mammals and reptiles

机译:Sox2标志着上皮细胞在哺乳动物和爬行动物中生成牙齿的能力

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摘要

Tooth renewal is initiated from epithelium associated with existing teeth. The development of new teeth requires dental epithelial cells that have competence for tooth formation, but specific marker genes for these cells have not been identified. Here, we analyzed expression patterns of the transcription factor Sox2 in two different modes of successional tooth formation: tooth replacement and serial addition of primary teeth. We observed specific Sox2 expression in the dental lamina that gives rise to successional teeth in mammals with one round of tooth replacement as well as in reptiles with continuous tooth replacement. Sox2 was also expressed in the dental lamina during serial addition of mammalian molars, and genetic lineage tracing indicated that Sox2+ cells of the first molar give rise to the epithelial cell lineages of the second and third molars. Moreover, conditional deletion of Sox2 resulted in hyperplastic epithelium in the forming posterior molars. Our results indicate that the Sox2+ dental epithelium has competence for successional tooth formation and that Sox2 regulates the progenitor state of dental epithelial cells. The findings imply that the function of Sox2 has been conserved during evolution and that tooth replacement and serial addition of primary teeth represent variations of the same developmental process. The expression patterns of Sox2 support the hypothesis that dormant capacity for continuous tooth renewal exists in mammals.
机译:牙齿更新是从与现有牙齿相关的上皮开始的。新牙齿的发育需要具有牙齿形成能力的牙齿上皮细胞,但是尚未鉴定出这些细胞的特定标记基因。在这里,我们分析了转录因子Sox2在两种不同的连续牙齿形成方式中的表达模式:牙齿置换和连续增加乳突。我们观察到牙齿薄层中特定的Sox2表达,在哺乳动物中用一轮补牙以及在连续爬行牙的爬行动物中产生了连续的牙齿。在连续添加哺乳动物磨牙的过程中,Sox2也表达在牙齿的椎板中,遗传谱系追踪表明,第一磨牙的Sox2 +细胞产生了第二磨牙和第三磨牙的上皮细胞谱系。此外,Sox2的条件性删除导致形成后磨牙的上皮增生。我们的结果表明,Sox2 +牙齿上皮具有连续形成牙齿的能力,并且Sox2调节牙齿上皮细胞的祖细胞状态。这些发现暗示Sox2的功能在进化过程中得到了保留,而牙齿的替换和连续增加的乳牙代表了同一发育过程的变异。 Sox2的表达模式支持这样的假设,即哺乳动物存在持续的牙齿更新潜伏能力。

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