Gossen Stefanie, Gerstner Sarah, Borchers Annette
Department of Biology, Molecular Embryology, Philipps-University Marburg, Karl-von-Frisch-Str. 8, 35043 Marburg, Germany.
Department of Biology, Molecular Embryology, Philipps-University Marburg, Karl-von-Frisch-Str. 8, 35043 Marburg, Germany.
Cells Dev. 2024 Mar;177:203899. doi: 10.1016/j.cdev.2023.203899. Epub 2023 Dec 30.
Directed cell migration requires a local fine-tuning of Rho GTPase activity to control protrusion formation, cell-cell contraction, and turnover of cellular adhesions. The Rho guanine nucleotide exchange factor (GEF) TRIO is ideally suited to control RhoGTPase activity because it combines two distinct catalytic domains to control Rac1 and RhoA activity in one molecule. However, at the cellular level, this molecular feature also requires a tight spatiotemporal control of TRIO activity. Here, we analyze the dynamic localization of Trio in Xenopus cranial neural crest (NC) cells, where we have recently shown that Trio is required for protrusion formation and migration. Using live cell imaging, we find that the GEF2 domain, but not the GEF1 domain of Trio, dynamically colocalizes with EB3 at microtubule plus-ends. Microtubule-mediated transport of Trio appears to be relevant for its function in NC migration, as a mutant GEF2 construct lacking the SxIP motif responsible for microtubule plus-end localization was significantly impaired in its ability to rescue the Trio loss-of-function phenotype compared to wild-type GEF2. Furthermore, by analyzing microtubule dynamics in migrating NC cells, we observed that loss of Trio function stabilized microtubules at cell-cell contact sites compared to controls, whereas they were destabilized at the leading edge of NC cells. Our data suggest that Trio is transported by microtubules to distinct subcellular locations where it has different functions in controlling microtubule stability, cell morphology, and cell-cell interaction during directed NC migration.
定向细胞迁移需要对Rho GTP酶活性进行局部微调,以控制突起形成、细胞间收缩和细胞黏附的转换。Rho鸟嘌呤核苷酸交换因子(GEF)TRIO非常适合控制Rho GTP酶活性,因为它结合了两个不同的催化结构域,可在一个分子中控制Rac1和RhoA活性。然而,在细胞水平上,这种分子特征也需要对TRIO活性进行严格的时空控制。在这里,我们分析了非洲爪蟾颅神经嵴(NC)细胞中Trio的动态定位,我们最近发现Trio是突起形成和迁移所必需的。通过活细胞成像,我们发现Trio的GEF2结构域而非GEF1结构域与EB3在微管正端动态共定位。Trio的微管介导运输似乎与其在NC迁移中的功能相关,因为与野生型GEF2相比,缺乏负责微管正端定位的SxIP基序的突变GEF2构建体在挽救Trio功能缺失表型的能力上显著受损。此外,通过分析迁移的NC细胞中的微管动态,我们观察到与对照相比,Trio功能丧失使细胞间接触部位的微管稳定,而在NC细胞的前缘微管则不稳定。我们的数据表明,Trio通过微管运输到不同的亚细胞位置,在定向NC迁移过程中,它在控制微管稳定性、细胞形态和细胞间相互作用方面具有不同的功能。