Emmerson Elaine, May Alison J, Nathan Sara, Cruz-Pacheco Noel, Lizama Carlos O, Maliskova Lenka, Zovein Ann C, Shen Yin, Muench Marcus O, Knox Sarah M
Program in Craniofacial Biology, Department of Cell and Tissue Biology, University of California, San Francisco, San Francisco, United States.
Cardiovascular Research Institute, University of California, San Francisco, San Francisco, United States.
Elife. 2017 Jun 17;6:e26620. doi: 10.7554/eLife.26620.
Acinar cells play an essential role in the secretory function of exocrine organs. Despite this requirement, how acinar cells are generated during organogenesis is unclear. Using the acini-ductal network of the developing human and murine salivary gland, we demonstrate an unexpected role for SOX2 and parasympathetic nerves in generating the acinar lineage that has broad implications for epithelial morphogenesis. Despite SOX2 being expressed by progenitors that give rise to both acinar and duct cells, genetic ablation of SOX2 results in a failure to establish acini but not ducts. Furthermore, we show that SOX2 targets acinar-specific genes and is essential for the survival of acinar but not ductal cells. Finally, we illustrate an unexpected and novel role for peripheral nerves in the creation of acini throughout development via regulation of SOX2. Thus, SOX2 is a master regulator of the acinar cell lineage essential to the establishment of a functional organ.
腺泡细胞在外分泌器官的分泌功能中发挥着至关重要的作用。尽管有此需求,但在器官发生过程中腺泡细胞是如何产生的仍不清楚。利用发育中的人和小鼠唾液腺的腺泡 - 导管网络,我们证明了SOX2和副交感神经在产生腺泡谱系方面具有意想不到的作用,这对上皮形态发生具有广泛影响。尽管SOX2由产生腺泡和导管细胞的祖细胞表达,但SOX2的基因敲除导致无法形成腺泡而非导管。此外,我们表明SOX2靶向腺泡特异性基因,并且对于腺泡细胞而非导管细胞的存活至关重要。最后,我们说明了外周神经通过调节SOX2在整个发育过程中创建腺泡方面具有意想不到的新作用。因此,SOX2是腺泡细胞谱系的主要调节因子,对功能性器官的建立至关重要。