Department of Cell and Developmental Biology, SUNY Upstate Medical University, Syracuse, New York.
J Cell Biochem. 2019 Sep;120(9):14383-14404. doi: 10.1002/jcb.28694. Epub 2019 Apr 11.
The formin family of proteins contributes to spatiotemporal control of actin cytoskeletal rearrangements during motile cell activities. The FMNL subfamily exhibits multiple mechanisms of linear actin filament formation and organization. Here we report novel actin-modifying functions of FMNL1 in breast adenocarcinoma migration models. FMNL1 is required for efficient cell migration and its three isoforms exhibit distinct localization. Suppression of FMNL1 protein expression results in a significant impairment of cell adhesion, migration, and invasion. Overexpression of FMNL1ɣ, but not FMNL1β or FMNL1α, enhances cell adhesion independent of the FH2 domain and FMNL1ɣ rescues migration in cells depleted of all three endogenous isoforms. While FMNL1ɣ inhibits actin assembly in vitro, it facilitates bundling of filamentous actin independent of the FH2 domain. The unique interactions of FMNL1ɣ with filamentous actin provide a new understanding of formin domain functions and its effect on motility of diverse cell types suggest a broader role than previously realized.
formin 家族蛋白有助于在运动细胞活动期间对肌动蛋白细胞骨架重排进行时空控制。FMNL 亚家族表现出多种线性肌动蛋白丝形成和组织的机制。在这里,我们报告了 FMNL1 在乳腺癌迁移模型中的新型肌动蛋白修饰功能。FMNL1 是有效细胞迁移所必需的,其三种异构体表现出不同的定位。抑制 FMNL1 蛋白表达会导致细胞黏附、迁移和侵袭显著受损。FMNL1ɣ 的过表达,而不是 FMNL1β 或 FMNL1α,增强了 FH2 结构域独立的细胞黏附,并且 FMNL1ɣ 可挽救耗尽所有三种内源性异构体的细胞的迁移。虽然 FMNL1ɣ 在体外抑制肌动蛋白组装,但它促进了丝状肌动蛋白的束状,而不依赖于 FH2 结构域。FMNL1ɣ 与丝状肌动蛋白的独特相互作用提供了对formin 结构域功能的新认识,其对不同细胞类型运动性的影响表明其作用比以前认识到的更为广泛。