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神经元发育过程中的中心体和无中心体微管成核

Centrosomal and acentrosomal microtubule nucleation during neuronal development.

作者信息

Vinopal Stanislav, Bradke Frank

机构信息

Centre for Nanomaterials and Biotechnology, Faculty of Science, Jan Evangelista Purkyne University (UJEP), Usti nad Labem, Czech Republic.

Laboratory of Axonal Growth and Regeneration, German Center for Neurodegenerative Diseases (DZNE), Bonn, Germany.

出版信息

Curr Opin Neurobiol. 2025 Jun;92:103016. doi: 10.1016/j.conb.2025.103016. Epub 2025 Mar 26.

Abstract

Neurons rely on the microtubule cytoskeleton to create and maintain their sophisticated cellular architectures. Advances in cryogenic electron microscopy, expansion microscopy, live imaging, and gene editing have enabled novel insights into mechanisms of centrosomal and acentrosomal microtubule nucleation, the key process generating new microtubules. This has paved the way for the functional dissection of distinct microtubule networks that regulate various processes during neuronal development, including neuronal delamination, polarization, migration, maturation, and synapse function. We review recent progress in understanding the molecular concepts of microtubule nucleation, how these concepts underlie neurodevelopmental processes, and pinpoint the open questions. Since microtubules play a pivotal role in axon regeneration within the adult central nervous system, understanding the processes of microtubule nucleation could inform strategies to enhance the regenerative capabilities of neurons in the future.

摘要

神经元依靠微管细胞骨架来构建和维持其复杂的细胞结构。低温电子显微镜、扩张显微镜、实时成像和基因编辑技术的进展,使人们对中心体和无中心体微管成核机制有了新的认识,微管成核是产生新微管的关键过程。这为剖析不同微管网络的功能铺平了道路,这些微管网络在神经元发育过程中调节各种过程,包括神经元脱层、极化、迁移、成熟和突触功能。我们综述了在理解微管成核分子概念方面的最新进展,这些概念如何构成神经发育过程的基础,并指出了尚未解决的问题。由于微管在成体中枢神经系统的轴突再生中起关键作用,了解微管成核过程可能为未来增强神经元再生能力的策略提供依据。

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