Department of Molecular Medicine, The Scripps Research Institute, La Jolla, CA, 92037, United States.
Department of Rehabilitation Sciences, University of Kentucky, Lexington, KY, 40536, United States.
Sci Rep. 2018 May 9;8(1):7367. doi: 10.1038/s41598-018-25668-2.
RNA-binding proteins are emerging as key regulators of transitions in cell morphology. The RNA-binding motif protein 3 (RBM3) is a cold-inducible RNA-binding protein with broadly relevant roles in cellular protection, and putative functions in cancer and development. Several findings suggest that RBM3 has morphoregulatory functions germane to its roles in these contexts. For example, RBM3 helps maintain the morphological integrity of cell protrusions during cell stress and disease. Moreover, it is highly expressed in migrating neurons of the developing brain and in cancer invadopodia, suggesting roles in migration. We here show that RBM3 regulates cell polarity, spreading and migration. RBM3 was present in spreading initiation centers, filopodia and blebs that formed during cell spreading in cell lines and primary myoblasts. Reducing RBM3 triggered exaggerated spreading, increased RhoA expression, and a loss of polarity that was rescued by Rho kinase inhibition and overexpression of CRMP2. High RBM3 expression enhanced the motility of cells migrating by a mesenchymal mode involving extension of long protrusions, whereas RBM3 knockdown slowed migration, greatly reducing the ability of cells to extend protrusions and impairing multiple processes that require directional migration. These data establish novel functions of RBM3 of potential significance to tissue repair, metastasis and development.
RNA 结合蛋白正在成为细胞形态转变的关键调节因子。RNA 结合基序蛋白 3(RBM3)是一种冷诱导的 RNA 结合蛋白,在细胞保护中具有广泛相关的作用,并且在癌症和发育中具有潜在的功能。有几项发现表明,RBM3 具有与其在这些情况下的作用相关的形态调节功能。例如,RBM3 有助于在细胞应激和疾病期间维持细胞突起的形态完整性。此外,它在发育中大脑的迁移神经元和癌症侵袭伪足中高度表达,表明其在迁移中的作用。我们在这里表明,RBM3 调节细胞极性、铺展和迁移。RBM3 存在于细胞系和原代成肌细胞的细胞铺展起始中心、丝状伪足和泡囊中。降低 RBM3 会引发过度铺展、增加 RhoA 表达以及极性丧失,而 Rho 激酶抑制和 CRMP2 的过表达可挽救这种情况。高 RBM3 表达增强了通过涉及长突起延伸的间质模式迁移的细胞的运动性,而 RBM3 敲低会减缓迁移,极大地降低了细胞延伸突起的能力,并损害了需要定向迁移的多个过程。这些数据确立了 RBM3 的新功能,这对组织修复、转移和发育具有潜在意义。