Department of Molecular Life Sciences, University of Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
Molecular Life Science PhD Program, University and ETH Zürich, CH-8057 Zürich, Switzerland.
Development. 2022 Jan 1;149(1). doi: 10.1242/dev.199900. Epub 2022 Jan 4.
During Caenorhabditis elegans vulval development, the uterine anchor cell (AC) first secretes an epidermal growth factor (EGF) to specify the vulval cell fates and then invades the underlying vulval epithelium. By doing so, the AC establishes direct contact with the invaginating primary vulF cells and attaches the developing uterus to the vulva. The signals involved and the exact sequence of events joining these two organs are not fully understood. Using a conditional let-23 EGF receptor (EGFR) allele along with novel microfluidic short- and long-term imaging methods, we discovered a specific function of the EGFR in the AC during vulval lumen morphogenesis. Tissue-specific inactivation of let-23 in the AC resulted in imprecise alignment of the AC with the primary vulval cells, delayed AC invasion and disorganized adherens junctions at the contact site forming between the AC and the dorsal vulF toroid. We propose that EGFR signaling, activated by a reciprocal EGF cue from the primary vulval cells, positions the AC at the vulval midline, guides it during invasion and assembles a cytoskeletal scaffold organizing the adherens junctions that connect the developing uterus to the dorsal vulF toroid. Thus, EGFR signaling in the AC ensures the precise alignment of the two developing organs.
在秀丽隐杆线虫的阴道发育过程中,子宫锚定细胞 (AC) 首先分泌表皮生长因子 (EGF) 来指定阴道细胞命运,然后侵入下面的阴道上皮。这样,AC 就与正在内陷的初级阴道 F 细胞建立了直接接触,并将正在发育的子宫连接到阴道上。目前还不完全了解涉及的信号以及连接这两个器官的确切事件顺序。我们使用条件性 let-23 EGF 受体 (EGFR) 等位基因以及新颖的微流控短期和长期成像方法,发现了 EGFR 在阴道管腔形态发生过程中在 AC 中的特定功能。在 AC 中组织特异性地失活 let-23 导致 AC 与初级阴道细胞的准确定位,AC 入侵延迟以及在 AC 与背侧阴道 F 环之间形成的接触部位的黏着连接紊乱。我们提出,由初级阴道细胞的相互 EGF 线索激活的 EGFR 信号在阴道中线定位 AC,在入侵过程中引导它,并组装一个细胞骨架支架,将正在发育的子宫连接到背侧阴道 F 环。因此,AC 中的 EGFR 信号确保了两个发育器官的精确对准。