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一个 JIP3 调节的 GSK3β/DCX 信号通路限制了轴突分支。

A JIP3-regulated GSK3β/DCX signaling pathway restricts axon branching.

机构信息

Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Neurosci. 2010 Dec 15;30(50):16766-76. doi: 10.1523/JNEUROSCI.1362-10.2010.

Abstract

Axon branching plays a critical role in establishing the accurate patterning of neuronal circuits in the brain. However, the mechanisms that control axon branching remain poorly understood. Here we report that knockdown of the brain-enriched signaling protein JNK-interacting protein 3 (JIP3) triggers exuberant axon branching and self-contact in primary granule neurons of the rat cerebellar cortex. JIP3 knockdown in cerebellar slices and in postnatal rat pups in vivo leads to the formation of ectopic branches in granule neuron parallel fiber axons in the cerebellar cortex. We also find that JIP3 restriction of axon branching is mediated by the protein kinase glycogen synthase kinase 3β (GSK3β). JIP3 knockdown induces the downregulation of GSK3β in neurons, and GSK3β knockdown phenocopies the effect of JIP3 knockdown on axon branching and self-contact. Finally, we establish doublecortin (DCX) as a novel substrate of GSK3β in the control of axon branching and self-contact. GSK3β phosphorylates DCX at the distinct site of Ser327 and thereby contributes to DCX function in the restriction of axon branching. Together, our data define a JIP3-regulated GSK3β/DCX signaling pathway that restricts axon branching in the mammalian brain. These findings may have important implications for our understanding of neuronal circuitry during development, as well as the pathogenesis of neurodevelopmental disorders of cognition.

摘要

轴突分支在大脑中神经元回路的精确模式形成中起着至关重要的作用。然而,控制轴突分支的机制仍知之甚少。在这里,我们报告说,脑富集信号蛋白 JNK 相互作用蛋白 3(JIP3)的敲低会触发大鼠小脑皮质初级颗粒神经元中过度的轴突分支和自接触。小脑切片和体内新生大鼠幼仔中的 JIP3 敲低会导致颗粒神经元平行纤维轴突中异位分支的形成。我们还发现,JIP3 对轴突分支的限制是由蛋白激酶糖原合酶激酶 3β(GSK3β)介导的。JIP3 敲低会诱导神经元中 GSK3β 的下调,而 GSK3β 敲低会模拟 JIP3 敲低对轴突分支和自接触的影响。最后,我们确定了双皮质蛋白(DCX)作为 GSK3β 在控制轴突分支和自接触中的新底物。GSK3β 在 Ser327 处的独特位点磷酸化 DCX,从而有助于 DCX 在限制轴突分支中的功能。总之,我们的数据定义了一个 JIP3 调节的 GSK3β/DCX 信号通路,该通路限制了哺乳动物大脑中的轴突分支。这些发现可能对我们理解发育过程中的神经元回路以及认知神经发育障碍的发病机制具有重要意义。

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