首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Process elongation of oligodendrocytes is promoted by the Kelch-related actin-binding protein Mayven.
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Process elongation of oligodendrocytes is promoted by the Kelch-related actin-binding protein Mayven.

机译:Kelch相关肌动蛋白结合蛋白Mayven促进少突胶质细胞的过程延长。

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Abstract Rearrangement of the cytoskeleton leading to the extension of cellular processes is essential for the myelination of axons by oligodendrocytes. We observed that the actin-binding protein, Mayven, is expressed during all stages of the oligodendrocyte lineage, and that its expression is up-regulated during oligodendrocyte differentiation. Mayven is localized in the cytoplasm and along the cell processes. Mayven also binds actin, and is involved in the cytoskeletal reorganization in oligodendrocyte precursor cells (O-2A cells) that leads to process elongation. Mayven overexpression resulted in an increase in the process outgrowth of O-2A cells and in the lengths of the processes, while microinjection of Mayven-specific antibodies inhibited process extension in these cells. Furthermore, O-2A cells transduced with recombinant retroviral sense Mayven (pMIG-W-Mayven) showed an increase in the number of oligodendrocyte processes with outgrowth, while recombinant retroviral antisense Mayven (pMIG-W-Mayven-AS) blocked O-2A process extension. Interestingly, co-localization and association of Mayven with Fyn kinase were found in O-2A cells, and these interactions were increased during the outgrowth of oligodendrocyte processes. This association was mediated via the SH3 domain ligand (a.a. 1-45) of Mayven and the SH3 domain of Fyn, suggesting that Mayven may act as a linker to bind Fyn, via its N-terminus. Thus, Mayven plays a role in the dynamics of cytoskeletal rearrangement leading to the process extension of oligodendrocytes.
机译:摘要导致少突胶质细胞轴突髓鞘化的细胞骨架重排导致细胞过程的扩展是必不可少的。我们观察到,肌动蛋白结合蛋白Mayven在少突胶质细胞谱系的所有阶段均表达,并且其表达在少突胶质细胞分化过程中被上调。 Mayven位于细胞质中和沿细胞过程。 Mayven还结合肌动蛋白,并参与少突胶质前体细胞(O-2A细胞)中的细胞骨架重组,从而导致过程延长。 Mayven过度表达导致O-2A细胞的过程生长和过程长度增加,而Mayven特异性抗体的显微注射抑制了这些细胞中的过程扩展。此外,用重组逆转录病毒正义Mayven(pMIG-W-Mayven)转导的O-2A细胞显示少突胶质细胞过程数量增加,而重组逆转录病毒反义Mayven(pMIG-W-Mayven-AS)阻止了O-2A过程。延期。有趣的是,在O-2A细胞中发现了Mayven与Fyn激酶的共定位和缔合,并且在少突胶质细胞过程的生长过程中,这些相互作用增加了。这种联系是通过Mayven的SH3结构域配体(a.a.1-45)和Fyn的SH3结构域介导的,这表明Mayven可以通过其N端充当结合Fyn的接头。因此,Mayven在导致骨骼少突胶质细胞过程扩展的细胞骨架重排动力学中起作用。

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