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A new in vitro mouse oligodendrocyte precursor cell migration assay reveals a role for integrin-linked kinase in cell motility

机译:一种新的体外小鼠少突胶质细胞前体细胞迁移试验揭示了整合素相关激酶在细胞运动中的作用

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Background The decline of remyelination in chronic multiple sclerosis (MS) is in part attributed to inadequate oligodendrocyte precursor cell (OPC) migration, a process governed by the extracellular matrix (ECM). Elucidating the mechanisms underlying OPC migration is therefore an important step towards developing new therapeutic strategies to promote myelin repair. Many seminal OPC culture methods were established using rat-sourced cells, and these often need modification for use with mouse OPCs due to their sensitive nature. It is of interest to develop mouse OPC assays to leverage the abundant transgenic lines. To this end, we developed a new OPC migration method specifically suited for use with mouse-derived cells. Results To validate its utility, we combined the new OPC migration assay with a conditional knockout approach to investigate the role of integrin-linked kinase (ILK) in OPC migration. ILK is a focal adhesion protein that stabilizes cellular adhesions to the extracellular matrix (ECM) by mediating a linkage between matrix-bound integrin receptors and the cytoskeleton. We identified ILK as a regulator of OPC migration on three permissive substrates. ILK loss produced an early, albeit transient, deficit in OPC migration on laminin matrix, while migration on fibronectin and polylysine was heavily reliant on ILK expression. Conclusions Inclusively, our work provides a new tool for studying mouse OPC migration and highlights the role of ILK in its regulation on ECM proteins relevant to MS.
机译:背景技术慢性多发性硬化症(MS)中髓鞘再生的下降部分归因于少突胶质细胞前体细胞(OPC)的迁移,该过程受细胞外基质(ECM)支配。因此,阐明潜在的OPC迁移机制是开发新的治疗策略以促进髓磷脂修复的重要一步。使用大鼠来源的细胞建立了许多精子OPC培养方法,由于它们的敏感性,通常需要对这些方法进行修饰以用于小鼠OPC。开发小鼠OPC测定法以利用丰富的转基因品系是令人感兴趣的。为此,我们开发了一种新的OPC迁移方法,特别适合与小鼠衍生细胞一起使用。结果为了验证其实用性,我们将新的OPC迁移分析与条件敲除方法相结合,以研究整联蛋白相关激酶(ILK)在OPC迁移中的作用。 ILK是一种粘着斑蛋白,可通过介导基质结合的整联蛋白受体与细胞骨架之间的连接来稳定细胞与细胞外基质的粘附。我们确定ILK是OPC在三种允许的底物上迁移的调节剂。 ILK的损失在层粘连蛋白基质上的OPC迁移中产生了早期的(尽管是短暂的)缺陷,而在纤连蛋白和聚赖氨酸上的迁移严重依赖于ILK的表达。结论包括在内,我们的工作为研究小鼠OPC迁移提供了一种新工具,并着重强调了ILK在其调控与MS相关的ECM蛋白方面的作用。

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