Hylton Ryan K, Heebner Jessica E, Grillo Michael A, Swulius Matthew T
Department of Biochemistry and Molecular Biology, Penn State College of Medicine, Hershey, PA, USA.
Nat Commun. 2022 May 4;13(1):2439. doi: 10.1038/s41467-022-30116-x.
Cofilin is best known for its ability to sever actin filaments and facilitate cytoskeletal recycling inside of cells, but at higher concentrations in vitro, cofilin stabilizes a more flexible, hyper-twisted state of actin known as "cofilactin". While this filament state is well studied, a structural role for cofilactin in dynamic cellular processes has not been observed. With a combination of cryo-electron tomography and fluorescence imaging in neuronal growth cones, we observe that filopodial actin filaments switch between a fascin-linked and a cofilin-decorated state, and that cofilactin is associated with a variety of dynamic events within filopodia. The switch to cofilactin filaments occurs in a graded fashion and correlates with a decline in fascin cross-linking within the filopodia, which is associated with curvature in the bundle. Our tomographic data reveal that the hyper-twisting of actin from cofilin binding leads to a rearrangement of filament packing, which largely excludes fascin from the base of filopodia. Our results provide mechanistic insight into the fundamentals of cytoskeletal remodeling inside of confined cellular spaces, and how the interplay between fascin and cofilin regulates the dynamics of searching filopodia.
丝切蛋白最为人所知的是其切断肌动蛋白丝并促进细胞内细胞骨架循环利用的能力,但在体外较高浓度下,丝切蛋白会使肌动蛋白稳定在一种更灵活、超扭曲的状态,即所谓的“丝切蛋白 - 肌动蛋白”。虽然这种丝状状态已得到充分研究,但尚未观察到丝切蛋白 - 肌动蛋白在动态细胞过程中的结构作用。通过结合冷冻电子断层扫描和神经元生长锥中的荧光成像,我们观察到丝状伪足中的肌动蛋白丝在与成束蛋白相连的状态和由丝切蛋白修饰的状态之间转换,并且丝切蛋白 - 肌动蛋白与丝状伪足内的各种动态事件相关。向丝切蛋白丝的转换以分级方式发生,并且与丝状伪足内成束蛋白交联的减少相关,而成束蛋白交联的减少与束中的曲率有关。我们的断层扫描数据显示,丝切蛋白结合导致的肌动蛋白超扭曲会引起丝束堆积的重新排列,这在很大程度上排除了丝状伪足基部的成束蛋白。我们的结果为受限细胞空间内细胞骨架重塑的基本原理,以及成束蛋白和丝切蛋白之间的相互作用如何调节探索性丝状伪足的动态变化提供了机制上的见解。