Nehlig Anne, Molina Angie, Rodrigues-Ferreira Sylvie, Honoré Stéphane, Nahmias Clara
Inserm U981, Institut Gustave Roussy, 114 rue Edouard Vaillant, 94800, Villejuif, France.
University Paris Saclay, 94800, Villejuif, France.
Cell Mol Life Sci. 2017 Jul;74(13):2381-2393. doi: 10.1007/s00018-017-2476-2. Epub 2017 Feb 15.
The regulation of microtubule dynamics is critical to ensure essential cell functions, such as proper segregation of chromosomes during mitosis or cell polarity and migration. End-binding protein 1 (EB1) is a plus-end-tracking protein (+TIP) that accumulates at growing microtubule ends and plays a pivotal role in the regulation of microtubule dynamics. EB1 autonomously binds an extended tubulin-GTP/GDP-Pi structure at growing microtubule ends and acts as a molecular scaffold that recruits a large number of regulatory +TIPs through interaction with CAP-Gly or SxIP motifs. While extensive studies have focused on the structure of EB1-interacting site at microtubule ends and its role as a molecular platform, the mechanisms involved in the negative regulation of EB1 have only started to emerge and remain poorly understood. In this review, we summarize recent studies showing that EB1 association with MT ends is regulated by post-translational modifications and affected by microtubule-targeting agents. We also present recent findings that structural MAPs, that have no tip-tracking activity, physically interact with EB1 to prevent its accumulation at microtubule plus ends. These observations point out a novel concept of "endogenous EB1 antagonists" and emphasize the importance of finely regulating EB1 function at growing microtubule ends.
微管动力学的调控对于确保细胞的基本功能至关重要,例如在有丝分裂期间染色体的正确分离或细胞极性与迁移。末端结合蛋白1(EB1)是一种正端追踪蛋白(+TIP),它在生长中的微管末端积累,并在微管动力学调控中发挥关键作用。EB1在生长中的微管末端自主结合一个延伸的微管蛋白 - GTP/GDP - Pi结构,并作为一个分子支架,通过与CAP - Gly或SxIP基序相互作用招募大量的调控性+TIP。虽然广泛的研究集中在微管末端EB1相互作用位点的结构及其作为分子平台的作用,但EB1负调控所涉及的机制才刚刚开始出现,并且仍知之甚少。在这篇综述中,我们总结了最近的研究,这些研究表明EB1与微管末端的结合受翻译后修饰调控,并受到微管靶向剂的影响。我们还展示了最近的发现,即没有末端追踪活性的结构型微管相关蛋白(MAPs)与EB1发生物理相互作用,以防止其在微管正端积累。这些观察结果指出了“内源性EB1拮抗剂”这一新概念,并强调了在生长中的微管末端精细调控EB1功能的重要性。