Cheng Li-Chun, Tu Kimberly C, Seidel Chris W, Robb Sofia M C, Guo Fengli, Sánchez Alvarado Alejandro
Stowers Institute for Medical Research, Kansas City, United States.
Stowers Institute for Medical Research, Kansas City, United States; Howard Hughes Medical Institute, Stowers Institute for Medical Research, Kansas City, United States.
Dev Biol. 2018 Jan 15;433(2):357-373. doi: 10.1016/j.ydbio.2017.08.030. Epub 2017 Oct 31.
The epidermis is essential for animal survival, providing both a protective barrier and cellular sensor to external environments. The generally conserved embryonic origin of the epidermis, but the broad morphological and functional diversity of this organ across animals is puzzling. We define the transcriptional regulators underlying epidermal lineage differentiation in the planarian Schmidtea mediterranea, an invertebrate organism that, unlike fruitflies and nematodes, continuously replaces its epidermal cells. We find that Smed-p53, Sox and Pax transcription factors are essential regulators of epidermal homeostasis, and act cooperatively to regulate genes associated with early epidermal precursor cell differentiation, including a tandemly arrayed novel gene family (prog) of secreted proteins. Additionally, we report on the discovery of distinct and previously undescribed secreted organelles whose production is dependent on the transcriptional activity of soxP-3, and which we term Hyman vesicles.
表皮对于动物生存至关重要,它为外部环境提供了保护性屏障和细胞传感器。表皮的胚胎起源通常是保守的,但该器官在动物界广泛的形态和功能多样性却令人费解。我们确定了涡虫Schmidtea mediterranea表皮谱系分化的转录调节因子,涡虫是一种无脊椎动物,与果蝇和线虫不同,它能持续替换其表皮细胞。我们发现Smed-p53、Sox和Pax转录因子是表皮稳态的关键调节因子,并协同作用来调节与早期表皮前体细胞分化相关的基因,包括一个串联排列的分泌蛋白新基因家族(prog)。此外,我们报告发现了独特的、以前未描述过的分泌细胞器,其产生依赖于soxP-3的转录活性,我们将其命名为海曼小泡。