Sayas C L, Avila Jesús
Centro de Biología Molecular "Severo Ochoa" (CSIC-UAM); Universidad Autónoma de Madrid; Madrid, Spain; Centro de Investigación Biomédica en Red de Enfermedades Neurodegenerativas (CIBERNED); Madrid, Spain.
Bioarchitecture. 2014 Jan-Feb;4(1):1-5. doi: 10.4161/bioa.27774. Epub 2014 Jan 10.
Microtubules (MTs) are key cytoskeletal elements in developing and mature neurons. MT reorganization underlies the morphological changes that occur during neuronal development. Furthermore, MTs contribute to the maintenance of neuronal architecture, enable intracellular transport and act as scaffolds for signaling molecules. Thus, a fine-tuned regulation of MT dynamics and stability is crucial for the correct differentiation and functioning of neurons. Different types of proteins contribute to the regulation of the MT state, such as plus-end tracking proteins (+TIPs), which interact with the plus-ends of growing microtubules, and classical microtubule-associated proteins (MAPs), which bind along the microtubule lattice. Recent evidence indicates that MAPs interplay with End Binding Proteins (EBs), the core +TIPs, in neuronal cells. This might contribute to the orchestrated regulation of MT dynamics in neurons. In this mini-review article, we address recent research on the neuronal crosstalk between EBs and classical MAPs and speculate on its possible functional relevance.
微管(MTs)是发育中和成熟神经元中的关键细胞骨架成分。微管重组是神经元发育过程中发生的形态变化的基础。此外,微管有助于维持神经元结构,促进细胞内运输,并作为信号分子的支架。因此,对微管动力学和稳定性进行精细调节对于神经元的正确分化和功能至关重要。不同类型的蛋白质有助于调节微管状态,例如与正在生长的微管正端相互作用的正端追踪蛋白(+TIPs),以及沿微管晶格结合的经典微管相关蛋白(MAPs)。最近的证据表明,在神经元细胞中,微管相关蛋白与作为核心正端追踪蛋白的末端结合蛋白(EBs)相互作用。这可能有助于对神经元中微管动力学进行协调调节。在这篇小型综述文章中,我们阐述了关于末端结合蛋白和经典微管相关蛋白之间神经元串扰的最新研究,并推测了其可能的功能相关性。