ALD-R491调节波形蛋白丝的稳定性和溶解性、细胞收缩力、细胞迁移速度和方向性。
ALD-R491 regulates vimentin filament stability and solubility, cell contractile force, cell migration speed and directionality.
作者信息
Kim Hyejeong Rosemary, Warrington Samantha J, López-Guajardo Ana, Al Hennawi Khairat, Cook Sarah L, Griffith Zak D J, Symmes Deebie, Zhang Tao, Qu Zhipeng, Xu Ying, Chen Ruihuan, Gad Annica K B
机构信息
Department of Oncology and Metabolism, The Medical School, University of Sheffield, Sheffield, United Kingdom.
School of Biosciences, University of Sheffield, Sheffield, United Kingdom.
出版信息
Front Cell Dev Biol. 2022 Nov 22;10:926283. doi: 10.3389/fcell.2022.926283. eCollection 2022.
Metastasizing cells express the intermediate filament protein vimentin, which is used to diagnose invasive tumors in the clinic. However, the role of vimentin in cell motility, and if the assembly of non-filamentous variants of vimentin into filaments regulates cell migration remains unclear. We observed that the vimentin-targeting drug ALD-R491 increased the stability of vimentin filaments, by reducing filament assembly and/or disassembly. ALD-R491-treatment also resulted in more bundled and disorganized filaments and an increased pool of non-filamentous vimentin. This was accompanied by a reduction in size of cell-matrix adhesions and increased cellular contractile forces. Moreover, during cell migration, cells showed erratic formation of lamellipodia at the cell periphery, loss of coordinated cell movement, reduced cell migration speed, directionality and an elongated cell shape with long thin extensions at the rear that often detached. Taken together, these results indicate that the stability of vimentin filaments and the soluble pool of vimentin regulate the speed and directionality of cell migration and the capacity of cells to migrate in a mechanically cohesive manner. These observations suggest that the stability of vimentin filaments governs the adhesive, physical and migratory properties of cells, and expands our understanding of vimentin functions in health and disease, including cancer metastasis.
转移性细胞表达中间丝蛋白波形蛋白,该蛋白在临床上用于诊断侵袭性肿瘤。然而,波形蛋白在细胞运动中的作用,以及波形蛋白的非丝状变体组装成丝是否调节细胞迁移仍不清楚。我们观察到,靶向波形蛋白的药物ALD-R491通过减少丝的组装和/或拆卸来增加波形蛋白丝的稳定性。用ALD-R491处理还导致更多的束状和无序的丝以及非丝状波形蛋白池增加。这伴随着细胞-基质粘附大小的减少和细胞收缩力的增加。此外,在细胞迁移过程中,细胞在细胞周边显示出片状伪足的不稳定形成,细胞协调运动丧失,细胞迁移速度、方向性降低,细胞形状拉长,后部有长而细的延伸部分,且这些延伸部分常常脱离。综上所述,这些结果表明波形蛋白丝的稳定性和波形蛋白的可溶性池调节细胞迁移的速度和方向性以及细胞以机械凝聚方式迁移的能力。这些观察结果表明波形蛋白丝的稳定性决定细胞的粘附、物理和迁移特性,并扩展了我们对波形蛋白在健康和疾病(包括癌症转移)中的功能的理解。