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依赖S-亚硝基化的蛋白酶体降解抑制Cdk5活性以调节海马突触强度。

S-nitrosylation-dependent proteasomal degradation restrains Cdk5 activity to regulate hippocampal synaptic strength.

作者信息

Zhang Peng, Fu Wing-Yu, Fu Amy K Y, Ip Nancy Y

机构信息

Divison of Life Science, The Hong Kong University of Science and Technology, Hong Kong, China.

Molecular Neuroscience Center, The Hong Kong University of Science and Technology, Hong Kong, China.

出版信息

Nat Commun. 2015 Oct 27;6:8665. doi: 10.1038/ncomms9665.

Abstract

Precise regulation of synaptic strength requires coordinated activity and functions of synaptic proteins, which is controlled by a variety of post-translational modification. Here we report that S-nitrosylation of p35, the activator of cyclin-dependent kinase 5 (Cdk5), by nitric oxide (NO) is important for the regulation of excitatory synaptic strength. While blockade of NO signalling results in structural and functional synaptic deficits as indicated by reduced mature dendritic spine density and surface expression of glutamate receptor subunits, phosphorylation of numerous synaptic substrates of Cdk5 and its activity are aberrantly upregulated following reduced NO production. The results show that the NO-induced reduction in Cdk5 activity is mediated by S-nitrosylation of p35, resulting in its ubiquitination and degradation by the E3 ligase PJA2. Silencing p35 protein in hippocampal neurons partially rescues the NO blockade-induced synaptic deficits. These findings collectively demonstrate that p35 S-nitrosylation by NO signalling is critical for regulating hippocampal synaptic strength.

摘要

突触强度的精确调节需要突触蛋白的协同活性和功能,这由多种翻译后修饰控制。在此,我们报告一氧化氮(NO)对细胞周期蛋白依赖性激酶5(Cdk5)的激活剂p35进行S-亚硝基化,对兴奋性突触强度的调节很重要。虽然NO信号传导的阻断会导致结构和功能上的突触缺陷,如成熟树突棘密度降低和谷氨酸受体亚基的表面表达减少,但在NO产生减少后,Cdk5的许多突触底物的磷酸化及其活性会异常上调。结果表明,NO诱导的Cdk5活性降低是由p35的S-亚硝基化介导的,导致其被E3连接酶PJA2泛素化和降解。在海马神经元中沉默p35蛋白可部分挽救NO阻断诱导的突触缺陷。这些发现共同表明,NO信号传导对p35的S-亚硝基化对于调节海马突触强度至关重要。

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