Division of Bioengineering, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka, Japan.
Research Fellow of the Japanese Society for the Promotion of Science, Kojimachi, Chiyoda-ku, Tokyo, Japan.
PLoS One. 2018 Apr 19;13(4):e0195124. doi: 10.1371/journal.pone.0195124. eCollection 2018.
Cell-substrate adhesions are essential for various physiological processes, including embryonic development and maintenance of organ functions. Hemidesmosomes (HDs) are multiprotein complexes that attach epithelial cells to the basement membrane. Formation and remodeling of HDs are dependent on the surrounding mechanical environment; however, the upstream signaling mechanisms are not well understood. We recently reported that Solo (also known as ARHGEF40), a guanine nucleotide exchange factor targeting RhoA, binds to keratin8/18 (K8/K18) intermediate filaments, and that their interaction is important for force-induced actin and keratin cytoskeletal reorganization. In this study, we show that Solo co-precipitates with an HD protein, β4-integrin. Co-precipitation assays revealed that the central region (amino acids 330-1057) of Solo binds to the C-terminal region (1451-1752) of β4-integrin. Knockdown of Solo significantly suppressed HD formation in MCF10A mammary epithelial cells. Similarly, knockdown of K18 or treatment with Y-27632, a specific inhibitor of Rho-associated kinase (ROCK), suppressed HD formation. As Solo knockdown or Y-27632 treatment is known to disorganize K8/K18 filaments, these results suggest that Solo is involved in HD formation by regulating K8/K18 filament organization via the RhoA-ROCK signaling pathway. We also showed that knockdown of Solo impairs acinar formation in MCF10A cells cultured in 3D Matrigel. In addition, Solo accumulated at the site of traction force generation in 2D-cultured MCF10A cells. Taken together, these results suggest that Solo plays a crucial role in HD formation and acinar development in epithelial cells by regulating mechanical force-induced RhoA activation and keratin filament organization.
细胞-基质黏附对于各种生理过程至关重要,包括胚胎发育和器官功能的维持。半桥粒(HDs)是一种将上皮细胞附着到基底膜的多蛋白复合物。HD 的形成和重塑依赖于周围的机械环境;然而,上游信号机制尚不清楚。我们最近报道,Solo(也称为 ARHGEF40),一种针对 RhoA 的鸟嘌呤核苷酸交换因子,与角蛋白 8/18(K8/K18)中间丝结合,它们的相互作用对于力诱导的肌动蛋白和角蛋白细胞骨架重排很重要。在这项研究中,我们表明 Solo 与 HD 蛋白β4-整合素共沉淀。共沉淀分析表明,Solo 的中心区域(氨基酸 330-1057)与β4-整合素的 C 端区域(1451-1752)结合。Solo 的敲低显著抑制 MCF10A 乳腺上皮细胞中的 HD 形成。同样,敲低 K18 或用 Rho 相关激酶 (ROCK) 的特异性抑制剂 Y-27632 处理也抑制了 HD 的形成。由于众所周知 Solo 的敲低或 Y-27632 处理会使 K8/K18 纤维无序化,这些结果表明 Solo 通过调节 RhoA-ROCK 信号通路来调节 K8/K18 纤维的组织,从而参与 HD 的形成。我们还表明,Solo 的敲低会损害 MCF10A 细胞在 3D Matrigel 中培养时的腺泡形成。此外,Solo 在 2D 培养的 MCF10A 细胞中在牵引力产生部位积累。总之,这些结果表明 Solo 通过调节机械力诱导的 RhoA 激活和角蛋白纤维组织,在上皮细胞中的 HD 形成和腺泡发育中发挥关键作用。