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The AP-2 Transcription Factor APTF-2 Is Required for Neuroblast and Epidermal Morphogenesis in Caenorhabditis elegans Embryogenesis

机译:AP-2转录因子APTF-2是秀丽隐杆线虫胚胎发生中的神经母细胞和表皮形态发生所必需的

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摘要

The evolutionarily conserved family of AP-2 transcription factors (TF) regulates proliferation, differentiation, and apoptosis. Mutations in human AP-2 TF have been linked with bronchio-occular-facial syndrome and Char Syndrome, congenital birth defects characterized by craniofacial deformities and patent ductus arteriosus, respectively. How mutations in AP-2 TF cause the disease phenotypes is not well understood. Here, we characterize the aptf-2(qm27) allele in Caenorhabditis elegans, which carries a point mutation in the conserved DNA binding region of AP-2 TF. We show that compromised APTF-2 activity leads to defects in dorsal intercalation, aberrant ventral enclosure and elongation defects, ultimately culminating in the formation of morphologically deformed larvae or complete arrest during epidermal morphogenesis. Using cell lineaging, we demonstrate that APTF-2 regulates the timing of cell division, primarily in ABarp, D and C cell lineages to control the number of neuroblasts, muscle and epidermal cells. Live imaging revealed nuclear enrichment of APTF-2 in lineages affected by the qm27 mutation preceding the relevant morphogenetic events. Finally, we found that another AP-2 TF, APTF-4, is also essential for epidermal morphogenesis, in a similar yet independent manner. Thus, our study provides novel insight on the cellular-level functions of an AP-2 transcription factor in development.
机译:AP-2转录因子(TF)的进化保守家族调节增殖,分化和凋亡。人类AP-2 TF的突变已与支气管眼面部综合征和Char综合征(分别以颅面部畸形和动脉导管未闭为特征的先天性出生缺陷)相关。 AP-2 TF中的突变如何导致疾病表型尚不清楚。在这里,我们表征秀丽隐杆线虫中的aptf-2(qm27)等位基因,其在AP-2 TF的保守DNA结合区携带一个点突变。我们显示,受损的APTF-2活性导致背插缺损,腹侧畸形外壳和伸长缺损,最终导致形态上变形的幼虫的形成或表皮形态发生期间的完全停滞。使用细胞谱系,我们证明APTF-2调节细胞分裂的时间,主要在ABarp,D和C细胞谱系中,以控制成神经细胞,肌肉和表皮细胞的数量。实时成像显示在相关形态发生事件发生前受qm27突变影响的谱系中APTF-2的核富集。最后,我们发现另一个AP-2 TF,APTF-4,对于表皮形态发生也是必不可少的,以类似但独立的方式。因此,我们的研究提供了关于AP-2转录因子在发育中的细胞水平功能的新颖见解。

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