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泛素连接酶Phr1通过调节微管动力学来调控轴突生长。

The ubiquitin ligase Phr1 regulates axon outgrowth through modulation of microtubule dynamics.

作者信息

Lewcock Joseph W, Genoud Nicolas, Lettieri Karen, Pfaff Samuel L

机构信息

Gene Expression Laboratory, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.

出版信息

Neuron. 2007 Nov 21;56(4):604-20. doi: 10.1016/j.neuron.2007.09.009.

Abstract

To discover new genes involved in axon navigation, we conducted a forward genetic screen for recessive alleles affecting motor neuron pathfinding in GFP reporter mice mutagenized with ENU. In Magellan mutant embryos, motor axons were error prone and wandered inefficiently at choice points within embryos, but paradoxically responded to guidance cues with normal sensitivity in vitro. We mapped the Magellan mutation to the Phr1 gene encoding a large multidomain E3 ubiquitin ligase. Phr1 is associated with the microtubule cytoskeleton within neurons and selectively localizes to axons but is excluded from growth cones. Motor and sensory neurons from Magellan mutants display abnormal morphologies due to a breakdown in the polarized distribution of components that segregate between axons and growth cones. The Magellan phenotype can be reversed by stabilizing microtubules with taxol or inhibiting p38MAPK activity. Thus, efficacious pathfinding requires Phr1 activity for coordinating the cytoskeletal organization that distinguishes axons from growth cones.

摘要

为了发现参与轴突导航的新基因,我们在用ENU诱变的GFP报告基因小鼠中,针对影响运动神经元路径寻找的隐性等位基因进行了正向遗传学筛选。在麦哲伦突变体胚胎中,运动轴突容易出错,在胚胎内的选择点处低效徘徊,但矛盾的是,它们在体外对导向线索的反应具有正常的敏感性。我们将麦哲伦突变定位到编码一种大型多结构域E3泛素连接酶的Phr1基因。Phr1与神经元内的微管细胞骨架相关,并选择性地定位于轴突,但被排除在生长锥之外。由于轴突和生长锥之间分离的成分的极化分布破坏,麦哲伦突变体的运动和感觉神经元显示出异常形态。麦哲伦表型可以通过用紫杉醇稳定微管或抑制p38MAPK活性来逆转。因此,有效的路径寻找需要Phr1活性来协调区分轴突和生长锥的细胞骨架组织。

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