首页> 美国卫生研究院文献>The Journal of Neuroscience >FAK Is Required for Schwann Cell Spreading on Immature Basal Lamina to Coordinate the Radial Sorting of Peripheral Axons with Myelination
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FAK Is Required for Schwann Cell Spreading on Immature Basal Lamina to Coordinate the Radial Sorting of Peripheral Axons with Myelination

机译:对于未成熟的基底层上散布的雪旺氏细胞需要FAK来协调具有髓鞘作用的周围轴突的径向分选

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摘要

Without Focal Adhesion Kinase (FAK), developing murine Schwann cells (SCs) proliferate poorly, sort axons inefficiently, and cannot myelinate peripheral nerves. Here we show that FAK is required for the development of SCs when their basal lamina (BL) is fragmentary, but not when it is mature in vivo. Mutant SCs fail to spread on fragmentary BL during development in vivo, and this is phenocopied by SCs lacking functional FAK on low laminin (LN) in vitro. Furthermore, SCs without functional FAK initiate differentiation prematurely, both in vivo and in vitro. In contrast to their behavior on high levels of LN, SCs lacking functional FAK grown on low LN display reduced spreading, proliferation, and indicators of contractility (i.e., stress fibers, arcs, and focal adhesions) and are primed to differentiate. Growth of SCs lacking functional FAK on increasing LN concentrations in vitro revealed that differentiation is not regulated by G1 arrest but rather by cell spreading and the level of contractile actomyosin. The importance of FAK as a critical regulator of the specific response of developing SCs to fragmentary BL was supported by the ability of adult FAK mutant SCs to remyelinate demyelinated adult nerves on mature BL in vivo. We conclude that FAK promotes the spreading and actomyosin contractility of immature SCs on fragmentary BL, thus maintaining their proliferation, and preventing differentiation until they reach high density, thereby promoting radial sorting. Hence, FAK has a critical role in the response of SCs to limiting BL by promoting proliferation and preventing premature SC differentiation.
机译:如果没有局灶性粘附激酶(FAK),发育中的鼠类雪旺细胞(SCs)增殖能力差,轴突效率低下,并且无法使周围神经松动。在这里,我们显示,当SC的基底层(BL)断裂时,FAS对于SC的发育是必需的,但在体内成熟时则不是。突变的SC在体内发育过程中无法在片段BL上扩散,这是由于体外在低层粘连蛋白(LN)上缺乏功能性FAK的SC表现出来的。此外,不具有功能性FAK的SC会在体内和体外过早启动分化。与它们在高水平LN上的行为相反,缺乏在低LN上生长的功能性FAK的SC显示出减少的扩散,增殖和收缩性指标(即应力纤维,弧和粘着性),并已准备好进行区分。在体外增加LN浓度时缺乏功能性FAK的SC的生长表明,分化不是受G1阻滞调节,而是受细胞扩散和收缩性肌动球蛋白水平调节。 FAK作为发育中的SC对片段性BL特异性反应的关键调节因子的重要性得到了成人FAK突变体SC在体内成熟BL上使脱髓鞘的成年神经髓鞘再生的能力的支持。我们得出结论,FAK促进了不成熟SC在片段BL上的扩散和放线菌素收缩,从而维持了它们的增殖,并阻止了分化直至达到高密度,从而促进了径向分选。因此,FAK通过促进增殖和防止SC的过早分化,在SC对限制BL的反应中起关键作用。

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