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异常激活的神经元细胞周期由泛素连接酶 Itch 的失调引起,导致神经退行性变。

Aberrant activation of neuronal cell cycle caused by dysregulation of ubiquitin ligase Itch results in neurodegeneration.

机构信息

Eukaryotic Gene Expression Laboratory, National Institute of Immunology, New Delhi, India.

Center for Systems Biology and Molecular Medicine, Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore, 575018, India.

出版信息

Cell Death Dis. 2020 Jun 8;11(6):441. doi: 10.1038/s41419-020-2647-1.

Abstract

It is critical for the neuronal cell cycle to remain suppressed in terminally differentiated neurons as its activation results in aberrant cell cycle re-entry that causes neuronal apoptosis (CRNA), which has been observed in several neurodegenerative disorders like Alzheimer's disease (AD). In the present study, we report that E3 ubiquitin ligase Itch is a major regulator of CRNA and elucidated the mechanism via which it is regulated in this process. Neurotoxic amyloid peptide Aβ-treated neurons or neurons from an AD transgenic mouse model (TgAD) exhibited aberrant activation of the JNK pathway which resulted in the hyperphosphorylation of Itch. The phosphorylation of Itch primes it for autoubiquitination, which is necessary for its activation. These post-translational modifications of Itch facilitate its interaction with TAp73 resulting in its degradation. These series of events are critical for Itch-mediated CRNA and its phosphorylation and autoubiquitination site mutants reversed this process and were neuroprotective. These studies unravel a novel pathway via which neurodegeneration in AD and possibly other related disorders may be regulated by aberrant regulation of the neuronal cell cycle.

摘要

在终末分化的神经元中,神经元细胞周期的抑制至关重要,因为其激活会导致异常的细胞周期重新进入,从而引起神经元凋亡(CRNA),这在几种神经退行性疾病中都有观察到,如阿尔茨海默病(AD)。在本研究中,我们报告 E3 泛素连接酶 Itch 是 CRNA 的主要调节剂,并阐明了其在该过程中被调节的机制。神经毒性淀粉样肽 Aβ 处理的神经元或 AD 转基因小鼠模型(TgAD)中的神经元表现出 JNK 途径的异常激活,导致 Itch 的过度磷酸化。Itch 的磷酸化使其能够进行自身泛素化,这是其激活所必需的。这些 Itch 的翻译后修饰促进了它与 TAp73 的相互作用,导致其降解。这些事件对于 Itch 介导的 CRNA 及其磷酸化和自身泛素化位点突变体至关重要,这些突变体逆转了这一过程并具有神经保护作用。这些研究揭示了一条新的途径,通过该途径,AD 及其他相关疾病中的神经退行性变可能通过神经元细胞周期的异常调节来调控。

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