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Cdk5/p25 介导的 Fbxw7 位点特异性磷酸化及其导致的稳定性降低与谷氨酸诱导的兴奋性毒性有关。

Site-specific phosphorylation of Fbxw7 by Cdk5/p25 and its resulting decreased stability are linked to glutamate-induced excitotoxicity.

机构信息

Department of Systems Biology, Yonsei University College of Life Science and Biotechnology, Seoul, 03722, Korea.

Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, TX, 75390, USA.

出版信息

Cell Death Dis. 2019 Aug 2;10(8):579. doi: 10.1038/s41419-019-1818-4.

Abstract

Cyclin-dependent kinase 5 (Cdk5) is a serine/threonine protein kinase that regulates brain development and neurodegeneration. Cdk5 is activated by p25 that is generated from calpain-dependent cleavage of p35. The generation of p25 is responsible for the aberrant hyper-activation of Cdk5, which causes neurodegeneration. Using in vitro assays, we discovered that F-box/WD repeat-containing protein 7 (Fbxw7) is a new substrate of Cdk5. Additionally, Cdk5-dependent phosphorylation of Fbxw7 was detected in the presence of p25, and two amino acid residues (S349 and S372) were determined to be major phosphorylation sites. This phosphorylation was eventually linked to decreased stability of Fbxw7. Using a culture model of cortical neurons challenged with glutamate, we confirmed that decreased stability of Fbxw7 was indeed Cdk5-dependent. Furthermore, diminished levels of Fbxw7 led to increased levels of transcription factor AP-1 (c-Jun), a known substrate of Fbxw7. Given that previous reports demonstrate that c-Jun plays a role in accelerating neuronal apoptosis in these pathological models, our data support the concepts of a molecular cascade in which Cdk5-mediated phosphorylation of Fbxw7 negatively regulates Fbxw7 expression, thereby contributing to neuronal cell death following glutamate-mediated excitotoxicity.

摘要

周期蛋白依赖性激酶 5(Cdk5)是一种丝氨酸/苏氨酸蛋白激酶,可调节大脑发育和神经退行性变。Cdk5 通过钙蛋白酶依赖性切割 p35 生成的 p25 激活。p25 的产生负责 Cdk5 的异常过度激活,从而导致神经退行性变。通过体外测定,我们发现 F 盒/WD 重复蛋白 7(Fbxw7)是 Cdk5 的新底物。此外,在存在 p25 的情况下检测到 Cdk5 依赖性 Fbxw7 磷酸化,并且确定了两个氨基酸残基(S349 和 S372)是主要磷酸化位点。这种磷酸化最终导致 Fbxw7 稳定性降低。使用谷氨酸挑战的皮质神经元培养模型,我们证实 Fbxw7 的稳定性降低确实是 Cdk5 依赖性的。此外,Fbxw7 水平降低导致转录因子 AP-1(c-Jun)水平升高,c-Jun 是 Fbxw7 的已知底物。鉴于先前的报告表明 c-Jun 在这些病理模型中加速神经元凋亡中起作用,我们的数据支持这样一种概念,即 Cdk5 介导的 Fbxw7 磷酸化负调节 Fbxw7 表达,从而导致谷氨酸介导的兴奋性毒性后神经元细胞死亡的分子级联反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46c9/6675790/1a2de1f343ef/41419_2019_1818_Fig1_HTML.jpg

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