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Fyn 激酶参与转铁蛋白诱导的少突胶质细胞分化。

Fyn kinase is involved in oligodendroglial cell differentiation induced by apotransferrin.

机构信息

Department of Biological Chemistry, Institute of Biological and Physical Chemistry, School of Pharmacy and Biochemistry, University of Buenos Aires-CONICET, Buenos Aires, Argentina.

出版信息

J Neurosci Res. 2009 Nov 15;87(15):3378-89. doi: 10.1002/jnr.21962.

Abstract

Mechanisms that regulate oligodendroglial cell (OLGc) differentiation are the focus of intensive research in the field of cellular and molecular neurobiology. We have previously shown that the addition of apotransferrin (aTf) to primary OLGc cultures accelerates their differentiation and induces an increase in the expression of different components of the myelin cytoskeleton (CSK) such as actin, tubulin, and some of the microtubule-associated proteins, particularly the stable tubulin only peptide (STOP). Fyn protein-tyrosine kinase (Fyn kinase), a member of the Src family, participates in signalling pathways that regulate OLGs/myelin cytoskeletal reorganization. It is essential for myelin development in the central nervous system (CNS), and its absence results in hypomyelination. In the present study, we used both primary cell and N19 cell line cultures to investigate further the mechanisms of action involved in the accelerated differentiation of OLGcs induced by aTf. In particular, we were interested in studying the participation of Fyn kinase in the different pathways involved in the reorganization of the OLGc/myelin cytoskeleton. In agreement with results already published, we found that in OLGcs, Fyn kinase is associated with Tau and tubulin. Using a dominant-negative of Tau in which the Fyn-Tau-microtubules (MTs) interaction is blocked, we found that aTf was unable to induce OLGc morphological differentiation. It was also observed that aTf decreases the activated RhoA content in coincidence with a redistribution of actin immunoreactivity. These results give support to our hypothesis that Fyn kinase plays a key role in the differentiation process of OLGcs promoted by aTf.

摘要

调控少突胶质细胞(OLGcs)分化的机制是细胞和分子神经生物学领域的研究热点。我们之前已经表明,在原代 OLGc 培养物中添加脱铁转铁蛋白(aTf)可加速其分化,并诱导髓鞘细胞骨架(CSK)的不同成分表达增加,如肌动蛋白、微管蛋白和一些微管相关蛋白,特别是稳定的微管唯一肽(STOP)。原癌基因 Fyn 蛋白酪氨酸激酶(Fyn 激酶)是Src 家族的成员,参与调节 OLGs/髓鞘细胞骨架重排的信号通路。它对中枢神经系统(CNS)中的髓鞘发育至关重要,其缺失会导致髓鞘发育不良。在本研究中,我们使用原代细胞和 N19 细胞系培养物进一步研究了 aTf 诱导的 OLGc 加速分化所涉及的作用机制。特别是,我们有兴趣研究 Fyn 激酶在涉及 OLGc/髓鞘细胞骨架重排的不同途径中的参与情况。与已经发表的结果一致,我们发现 Fyn 激酶在 OLGcs 中与 Tau 和微管蛋白相关。使用 Fyn-Tau-微管(MT)相互作用被阻断的 Tau 显性负突变体,我们发现 aTf 无法诱导 OLGc 形态分化。还观察到 aTf 降低了激活的 RhoA 含量,同时肌动蛋白免疫反应性重新分布。这些结果支持我们的假设,即 Fyn 激酶在 aTf 促进的 OLGcs 分化过程中发挥关键作用。

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