Department of Biological Sciences, Rutgers University-Newark, Newark, NJ 07102.
Department of Biology, University of Indianapolis, Indianapolis, IN 46227.
Mol Biol Cell. 2020 Apr 15;31(9):930-943. doi: 10.1091/mbc.E18-06-0373. Epub 2020 Feb 19.
Intermediate filament (IF) cytoskeletal networks simultaneously support mechanical integrity and influence signal transduction pathways. Marked remodeling of the keratin IF network accompanies collective cellular morphogenetic movements that occur during early embryonic development in the frog While this reorganization of keratin is initiated by force transduction on cell-cell contacts mediated by C-cadherin, the mechanism by which keratin filament reorganization occurs remains poorly understood. In this work, we demonstrate that 14-3-3 proteins regulate keratin reorganization dynamics in embryonic mesendoderm cells from gastrula. 14-3-3 colocalizes with keratin filaments near cell-cell junctions in migrating mesendoderm. Coimmunoprecipitation, mass spectrometry, and bioinformatic analyses indicate 14-3-3 is associated with Keratin 19 (K19) in the whole embryo and, more specifically, mesendoderm tissue. Inhibition of 14-3-3 results in both the decreased exchange of keratin subunits into filaments and blocks keratin filament recruitment toward cell-cell contacts. Synthetically coupling 14-3-3 to K19 through a unique fusion construct conversely induces the localization of this keratin population to the region of cell-cell contacts. Taken together, these findings indicate that 14-3-3 acts on keratin IFs and is involved in their reorganization to sites of cell adhesion.
中间丝(IF)细胞骨架网络同时支持机械完整性并影响信号转导途径。在青蛙的早期胚胎发育过程中,角蛋白 IF 网络的明显重塑伴随着细胞集体形态发生运动。虽然这种角蛋白的重排是由 C-钙粘蛋白介导的细胞-细胞接触的力转导引发的,但角蛋白丝重排发生的机制仍知之甚少。在这项工作中,我们证明 14-3-3 蛋白在原肠胚期的胚胎中胚层细胞中调节角蛋白的重组动力学。14-3-3 在迁移的中胚层细胞与细胞连接处与角蛋白丝共定位。共免疫沉淀、质谱分析和生物信息学分析表明,14-3-3 在整个胚胎中与角蛋白 19(K19)相关,更具体地说,与中胚层组织相关。14-3-3 的抑制不仅导致角蛋白亚基向丝的交换减少,而且阻止角蛋白丝向细胞-细胞接触的募集。通过独特的融合构建体将 14-3-3 与 K19 合成偶联,相反会诱导该角蛋白群体定位到细胞-细胞接触区域。总之,这些发现表明 14-3-3 作用于角蛋白 IF 并参与其向细胞粘附部位的重排。