Department of Applied Sciences, Muroran Institute of Technology, Muroran, Hokkaido 050-8585, Japan.
Department of Physics, Faculty of Science and Engineering, Waseda University, Tokyo 169-8555, Japan.
Int J Mol Sci. 2020 May 1;21(9):3209. doi: 10.3390/ijms21093209.
A wide variety of uniquely localized actin-binding proteins (ABPs) are involved in various cellular activities, such as cytokinesis, migration, adhesion, morphogenesis, and intracellular transport. In a micrometer-scale space such as the inside of cells, protein molecules diffuse throughout the cell interior within seconds. In this condition, how can ABPs selectively bind to particular actin filaments when there is an abundance of actin filaments in the cytoplasm? In recent years, several ABPs have been reported to induce cooperative conformational changes to actin filaments allowing structural changes to propagate along the filament cables uni- or bidirectionally, thereby regulating the subsequent binding of ABPs. Such propagation of ABP-induced cooperative conformational changes in actin filaments may be advantageous for the elaborate regulation of cellular activities driven by actin-based machineries in the intracellular space, which is dominated by diffusion. In this review, we focus on long-range allosteric regulation driven by cooperative conformational changes of actin filaments that are evoked by binding of ABPs, and discuss roles of allostery of actin filaments in narrow intracellular spaces.
多种独特的肌动蛋白结合蛋白(ABP)参与各种细胞活动,如胞质分裂、迁移、黏附、形态发生和细胞内运输。在细胞内部这样的微米级空间中,蛋白质分子在数秒内即可在整个细胞内部扩散。在这种情况下,当细胞质中存在大量肌动蛋白丝时,ABP 如何选择性地与特定的肌动蛋白丝结合?近年来,已有报道称几种 ABP 诱导肌动蛋白丝发生协同构象变化,从而允许结构变化沿丝索单向或双向传播,从而调节 ABP 的后续结合。这种肌动蛋白丝上 ABP 诱导的协同构象变化的传播可能有利于受细胞内扩散主导的基于肌动蛋白的机器驱动的细胞活动的精细调节。在这篇综述中,我们重点介绍了由 ABP 结合引发的肌动蛋白丝协同构象变化所驱动的长程变构调节,并讨论了肌动蛋白丝的变构作用在狭窄的细胞内空间中的作用。