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肌动蛋白和微管的集体动力学及其由FHDC1介导的串扰。

Collective dynamics of actin and microtubule and its crosstalk mediated by FHDC1.

作者信息

Tong Chee San, Su Maohan, Sun He, Chua Xiang Le, Xiong Ding, Guo Su, Raj Ravin, Ong Nicole Wen Pei, Lee Ann Gie, Miao Yansong, Wu Min

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, CT, United States.

Department of Biological Sciences, Centre for Bioimaging Sciences, Singapore, Singapore.

出版信息

Front Cell Dev Biol. 2024 Mar 19;11:1261117. doi: 10.3389/fcell.2023.1261117. eCollection 2023.

Abstract

The coordination between actin and microtubule network is crucial, yet this remains a challenging problem to dissect and our understanding of the underlying mechanisms remains limited. In this study, we used travelling waves in the cell cortex to characterize the collective dynamics of cytoskeletal networks. Our findings show that Cdc42 and F-BAR-dependent actin waves in mast cells are mainly driven by formin-mediated actin polymerization, with the microtubule-binding formin FH2 domain-containing protein 1 (FHDC1) as an early regulator. Knocking down FHDC1 inhibits actin wave formation, and this inhibition require FHDC1's interaction with both microtubule and actin. The phase of microtubule depolymerization coincides with the nucleation of actin waves and microtubule stabilization inhibit actin waves, leading us to propose that microtubule shrinking and the concurrent release of FHDC1 locally regulate actin nucleation. Lastly, we show that FHDC1 is crucial for multiple cellular processes such as cell division and migration. Our data provided molecular insights into the nucleation mechanisms of actin waves and uncover an antagonistic interplay between microtubule and actin polymerization in their collective dynamics.

摘要

肌动蛋白与微管网络之间的协调至关重要,但剖析这一问题仍具有挑战性,我们对其潜在机制的理解仍然有限。在本研究中,我们利用细胞皮层中的行波来表征细胞骨架网络的集体动力学。我们的研究结果表明,肥大细胞中Cdc42和F-BAR依赖的肌动蛋白波主要由formin介导的肌动蛋白聚合驱动,含微管结合formin FH2结构域的蛋白1(FHDC1)作为早期调节因子。敲低FHDC1会抑制肌动蛋白波的形成,且这种抑制需要FHDC1与微管和肌动蛋白的相互作用。微管解聚阶段与肌动蛋白波的成核同时发生,微管稳定会抑制肌动蛋白波,这使我们提出微管收缩以及FHDC1的同时局部释放调节肌动蛋白成核。最后,我们表明FHDC1对细胞分裂和迁移等多个细胞过程至关重要。我们的数据为肌动蛋白波的成核机制提供了分子见解,并揭示了微管与肌动蛋白聚合在其集体动力学中的拮抗相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73d0/10985548/61be740c83a5/fcell-11-1261117-g001.jpg

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