Transcriptional programs of Pitx2 and Tfap2a/Tfap2b controlling lineage specification of mandibular epithelium during tooth initiation.

IF 4 2区 生物学 Q1 GENETICS & HEREDITY PLoS Genetics Pub Date : 2024-07-25 eCollection Date: 2024-07-01 DOI:10.1371/journal.pgen.1011364
Fan Shao, An-Vi Phan, Wenjie Yu, Yuwei Guo, Jamie Thompson, Carter Coppinger, Shankar R Venugopalan, Brad A Amendt, Eric Van Otterloo, Huojun Cao
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Abstract

How the dorsal-ventral axis of the vertebrate jaw, particularly the position of tooth initiation site, is established remains a critical and unresolved question. Tooth development starts with the formation of the dental lamina, a localized thickened strip within the maxillary and mandibular epithelium. To identify transcriptional regulatory networks (TRN) controlling the specification of dental lamina from the naïve mandibular epithelium, we utilized Laser Microdissection coupled low-input RNA-seq (LMD-RNA-seq) to profile gene expression of different domains of the mandibular epithelium along the dorsal-ventral axis. We comprehensively identified transcription factors (TFs) and signaling pathways that are differentially expressed along mandibular epithelial domains (including the dental lamina). Specifically, we found that the TFs Sox2 and Tfap2 (Tfap2a/Tfap2b) formed complimentary expression domains along the dorsal-ventral axis of the mandibular epithelium. Interestingly, both classic and novel dental lamina specific TFs-such as Pitx2, Ascl5 and Zfp536-were found to localize near the Sox2:Tfap2a/Tfap2b interface. To explore the functional significance of these domain specific TFs, we next examined loss-of-function mouse models of these domain specific TFs, including the dental lamina specific TF, Pitx2, and the ventral surface ectoderm specific TFs Tfap2a and Tfap2b. We found that disruption of domain specific TFs leads to an upregulation and expansion of the alternative domain's TRN. The importance of this cross-repression is evident by the ectopic expansion of Pitx2 and Sox2 positive dental lamina structure in Tfap2a/Tfap2b ectodermal double knockouts and the emergence of an ectopic tooth in the ventral surface ectoderm. Finally, we uncovered an unappreciated interface of mesenchymal SHH and WNT signaling pathways, at the site of tooth initiation, that were established by the epithelial domain specific TFs including Pitx2 and Tfap2a/Tfap2b. These results uncover a previously unknown molecular mechanism involving cross-repression of domain specific TFs including Pitx2 and Tfap2a/Tfap2b in patterning the dorsal-ventral axis of the mouse mandible, specifically the regulation of tooth initiation site.

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Pitx2和Tfap2a/Tfap2b的转录程序在牙齿萌发过程中控制下颌上皮细胞的品系规范。
脊椎动物颌骨的背腹轴,尤其是牙齿萌发部位的位置是如何确定的,这仍然是一个关键的未决问题。牙齿的发育始于牙层的形成,牙层是上颌和下颌上皮内局部增厚的条带。为了从幼稚的下颌上皮细胞中确定控制牙层规格的转录调控网络(TRN),我们利用激光显微切割耦合低输入 RNA-seq (LMD-RNA-seq)技术沿背-腹轴分析了下颌上皮细胞不同区域的基因表达。我们全面鉴定了下颌骨上皮域(包括牙层)不同表达的转录因子(TF)和信号通路。具体而言,我们发现TFs Sox2和Tfap2(Tfap2a/Tfap2b)沿着下颌骨上皮的背-腹轴形成了互补的表达域。有趣的是,在Sox2:Tfap2a/Tfap2b界面附近发现了传统的和新型的牙层特异性TF,如Pitx2、Ascl5和Zfp536。为了探索这些领域特异性 TF 的功能意义,我们接下来研究了这些领域特异性 TF 的功能缺失小鼠模型,包括牙层特异性 TF Pitx2 和腹面外胚层特异性 TF Tfap2a 和 Tfap2b。我们发现,破坏领域特异性 TF 会导致替代领域 TRN 的上调和扩展。Tfap2a/Tfap2b外胚层双基因敲除后,Pitx2和Sox2阳性牙层结构异位扩张,腹面外胚层出现异位牙齿,这证明了这种交叉抑制的重要性。最后,我们发现了间质 SHH 和 WNT 信号通路在牙齿萌发部位的一个未被重视的界面,它是由包括 Pitx2 和 Tfap2a/Tfap2b 在内的上皮域特异性 TFs 建立的。这些结果揭示了一种之前未知的分子机制,涉及包括 Pitx2 和 Tfap2a/Tfap2b 在内的领域特异性 TFs 在小鼠下颌骨背-腹轴模式化过程中的交叉抑制作用,特别是对牙齿萌发位点的调控。
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来源期刊
PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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