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首页> 外文期刊>Nature cell biology >Filopodial actin bundles are not necessary for microtubule advance into the peripheral domain of Aplysia neuronal growth cones
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Filopodial actin bundles are not necessary for microtubule advance into the peripheral domain of Aplysia neuronal growth cones

机译:丝状肌动蛋白束对于微管进入海床神经元生长锥的外围区域不是必需的

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摘要

Filopodial actin bundles guide microtubule assembly in the growth cone peripheral ( P) domain and retrograde actin-network flow simultaneously transports microtubules rearward. Therefore, microtubule-end position is determined by the sum of microtubule assembly and retrograde transport rates. However, how filopodia actually affect microtubule assembly dynamics is unknown. To address this issue we quantitatively assessed microtubule and actin dynamics before and after selective removal of filopodia. Filopodium removal had surprisingly little effect on retrograde actin-flow rates or underlying network structures, but resulted in an approximate doubling of peripheral microtubule density and deeper penetration of microtubules into the P domain. The latter stemmed from less efficient coupling of microtubules to remaining actin networks and not from a change in microtubule polymer dynamics. Loss of filopodia also resulted in increased lateral microtubule movements and a more randomized microtubule distribution in the P domain. In summary, filopodia do not seem to be formally required for microtubule advance; however, their presence ensures radial distribution of microtubules in the P domain and facilitates microtubule transport by retrograde flow. The resulting dynamic steady state has interesting implications for rapid microtubule-positioning responses in the P domain.
机译:丝状肌动蛋白束在生长锥外围(P)域引导微管组装,逆行肌动蛋白网络流动同时向后输送微管。因此,微管末端位置由微管组装和逆行转运速率的总和决定。然而,丝状伪足实际上如何影响微管组装动力学是未知的。为了解决这个问题,我们定量评估了选择性去除丝状伪足前后的微管和肌动蛋白动力学。丝状dium的去除对逆行肌动蛋白流速或基础网络结构几乎没有影响,但是导致外周微管密度大约增加一倍,并且微管更深地渗透到P结构域中。后者源于微管与剩余肌动蛋白网络耦合效率较低,而不是源于微管聚合物动力学的变化。丝状伪足的丧失还导致横向微管运动增加,并且微管在P结构域中的分布更加随机。综上所述,丝状伪足似乎并不是微管发展的正式要求。但是,它们的存在确保了微管在P结构域中的径向分布,并通过逆行流动促进了微管运输。产生的动态稳态对P结构域中的快速微管定位响应具有有趣的意义。

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