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Ensheathment and Myelination of Axons: Evolution of Glial Functions
Annual Review of Neuroscience ( IF 13.9 ) Pub Date : 2021-07-08 , DOI: 10.1146/annurev-neuro-100120-122621
Klaus-Armin Nave 1 , Hauke B Werner 1
Affiliation  

Myelination of axons provides the structural basis for rapid saltatory impulse propagation along vertebrate fiber tracts, a well-established neurophysiological concept. However, myelinating oligodendrocytes and Schwann cells serve additional functions in neuronal energy metabolism that are remarkably similar to those of axon-ensheathing glial cells in unmyelinated invertebrates. Here we discuss myelin evolution and physiological glial functions, beginning with the role of ensheathing glia in preventing ephaptic coupling, axoglial metabolic support, and eliminating oxidative radicals. In both vertebrates and invertebrates, axoglial interactions are bidirectional, serving to regulate cell fate, nerve conduction, and behavioral performance. One key step in the evolution of compact myelin in the vertebrate lineage was the emergence of the open reading frame for myelin basic protein within another gene. Several other proteins were neofunctionalized as myelin constituents and help maintain a healthy nervous system. Myelination in vertebrates became a major prerequisite of inhabiting new ecological niches.

中文翻译:


轴突的鞘和髓鞘形成:神经胶质功能的进化

轴突的髓鞘形成为沿脊椎动物纤维束的快速跳跃冲动传播提供了结构基础,这是一个完善的神经生理学概念。然而,髓鞘少突胶质细胞和雪旺细胞在神经元能量代谢中发挥着额外的功能,这些功能与无髓无脊椎动物中的轴突鞘神经胶质细胞非常相似。在这里,我们讨论髓鞘进化和生理神经胶质功能,首先是鞘内神经胶质在防止突触耦合、轴突代谢支持和消除氧化自由基中的作用。在脊椎动物和无脊椎动物中,轴突神经胶质相互作用是双向的,用于调节细胞命运、神经传导和行为表现。脊椎动物谱系中致密髓鞘进化的一个关键步骤是另一种基因中髓鞘碱性蛋白的开放阅读框的出现。其他几种蛋白质被新功能化为髓鞘成分,有助于维持健康的神经系统。脊椎动物的髓鞘形成成为栖息新生态位的主要先决条件。

更新日期:2021-07-09
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