首页> 美国卫生研究院文献>The Journal of Neuroscience >Decreased Cyclin-Dependent Kinase 5 (cdk5) Activity Is Accompanied by Redistribution of cdk5 and Cytoskeletal Proteins and Increased Cytoskeletal Protein Phosphorylation in p35 Null Mice
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Decreased Cyclin-Dependent Kinase 5 (cdk5) Activity Is Accompanied by Redistribution of cdk5 and Cytoskeletal Proteins and Increased Cytoskeletal Protein Phosphorylation in p35 Null Mice

机译:细胞周期蛋白依赖性激酶5(cdk5)活性降低伴随着p35小鼠中cdk5和细胞骨架蛋白的重新分布和细胞骨架蛋白磷酸化的增加

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摘要

Cdk5/p35 has been implicated in cytoskeletal protein phosphorylation in normal brain and in many human neurodegenerative disorders. Yet, mouse models of cdk5/p35 hyperactivity have not yielded corresponding changes in cytoskeletal protein phosphorylation. To elucidate the relationship between p35, cdk5, and the neuronal cytoskeleton, we deleted the p35 gene in mice having a pure C57BL/6 background. We found that p35 deficiency leads to a 38% reduction of cdk5 activity in adult brain. In addition, loss of p35 causes an anterograde redistribution of cdk5 toward peripheral neuronal processes. The unusual presence of nonphosphorylated neurofilament (NF) in aberrant axon fascicles and the relocation of tau and MAP2B from cell bodies and proximal neuronal processes to more distal sites of the neuropil in p35-/- mouse brain implicate p35 in neuronal trafficking, particularly in dynein-driven retrograde transport. In many axons of normal brain, cdk5 fails to colocalize with phosphorylated cytoskeletal protein epitopes. This observation, together with an unexpected increase of NF, tau, and MAP2B phosphoepitopes accompanying the decreased cdk5 activity in p35-/- mice, supports the idea that cdk5 does not phosphorylate cytoskeletal proteins directly. Rather, in structures where cdk5 does colocalize with phosphorylated cytoskeletal protein epitopes, it may function as a negative regulator of other proline-directed kinases that directly phosphorylate the proteins. Evidence for increased glycogen synthase kinase 3β (GSK3β) activity in p35-/- mice suggests that GSK3β may be one such kinase regulated by cdk5. Our studies illustrate that p35 regulates the subcellular distribution of cdk5 and cytoskeletal proteins in neurons and that cdk5 has a hierarchical role in regulating the phosphorylation and function of cytoskeletal proteins.
机译:Cdk5 / p35与正常大脑和许多人类神经退行性疾病的细胞骨架蛋白磷酸化有关。然而,cdk5 / p35过度活跃的小鼠模型尚未产生细胞骨架蛋白磷酸化的相应变化。为了阐明p35,cdk5和神经元细胞骨架之间的关系,我们在具有纯C57BL / 6背景的小鼠中删除了p35基因。我们发现p35缺乏导致成年大脑cdk5活性降低38%。此外,p35的丢失会导致cdk5向周围神经元过程的顺行性重新分布。 p35-/-小鼠大脑中异常轴突束中非磷酸化神经丝(NF)的异常存在以及tau和MAP2B从细胞体和近端神经元过程向神经桩远端位置的重新定位暗示了p35参与神经元运输,特别是在动力蛋白中。驱动的逆行运输。在正常大脑的许多轴突中,cdk5不能与磷酸化的细胞骨架蛋白表位共定位。该观察结果以及伴随在p35-/-小鼠中cdk5活性降低的NF,tau和MAP2B磷酸表位的意外增加,支持了cdk5不直接磷酸化细胞骨架蛋白的观点。相反,在cdk5确实与磷酸化的细胞骨架蛋白表位共定位的结构中,它可能充当其他脯氨酸导向的激酶的负调节剂,这些激酶直接使蛋白质磷酸化。在p35-/-小鼠中糖原合酶激酶3β(GSK3β)活性增加的证据表明,GSK3β可能是cdk5调节的这种激酶之一。我们的研究表明,p35调节cdk5和神经元中细胞骨架蛋白的亚细胞分布,而cdk5在调节细胞骨架蛋白的磷酸化和功能中具有分级作用。

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