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Pin1 抑制会激活细胞周期蛋白 D 并产生神经退行性病变。

Pin1 inhibition activates cyclin D and produces neurodegenerative pathology.

机构信息

Molecular Biology and Genetics Department, Istanbul Technical University, Ayazağa Kampüsü, Maslak, Istanbul/Turkey.

出版信息

J Neurochem. 2012 Feb;120(3):430-9. doi: 10.1111/j.1471-4159.2011.07259.x. Epub 2011 May 5.

DOI:10.1111/j.1471-4159.2011.07259.x
PMID:21443524
Abstract

Abnormal cell cycle events are increasingly becoming important attributes of neurodegenerative pathology. Pin1 is a crucial target of neurodegeneration in relation to its functions regarding these abnormal cell cycle events in neurons. Pin1 is majorly involved in many aspects of cell cycle regulation and it has also been suggested to have a neuroprotective function against neurodegenerative pathologies. Oxidative dysregulation of Pin1 affects not only normal tau regulation, eventually causing tangle formation, but also cell cycle regulation in neurons. Presence of cell cycle proteins has been shown in many neurodegenerative diseases. Importantly, many of these proteins have physical interactions with Pin1. Hence, understanding Pin1's role in abnormal cell cycle re-entry is critical in terms of finding new approaches for the future therapeutic options treating neurodegenerative pathologies. Here, we show that inhibition of Pin1 by its selective inhibitor juglone leads to up-regulation of cyclinD1, phospho-tau, and caspase 3, producing apoptosis in cultured rat hippocampal neurons. We also observed axonal retraction with a change in sub-cellular localizations of cyclins. Therefore, Pin1 dysregulation, in relation to its role in cell cycle regulation in neurons, may have profound effects in the progression of neurodegenerative pathology, making it a possible crucial target behind many neurodegenerative diseases.

摘要

异常的细胞周期事件正日益成为神经退行性病理的重要特征。Pin1 是神经退行性变的关键靶点,与其在神经元异常细胞周期事件中的功能有关。Pin1 主要参与细胞周期调控的许多方面,并且已经被提出具有针对神经退行性病变的神经保护功能。Pin1 的氧化失调不仅影响正常的 tau 调节,最终导致缠结形成,还影响神经元的细胞周期调节。许多神经退行性疾病中都存在细胞周期蛋白。重要的是,这些蛋白质中的许多与 Pin1 具有物理相互作用。因此,了解 Pin1 在异常细胞周期重新进入中的作用对于寻找未来治疗神经退行性病变的治疗方法至关重要。在这里,我们表明,其选择性抑制剂 Juglone 抑制 Pin1 会导致 cyclinD1、磷酸化 tau 和 caspase 3 的上调,从而在培养的大鼠海马神经元中产生细胞凋亡。我们还观察到轴突回缩,并伴有细胞周期蛋白亚细胞定位的变化。因此,Pin1 的失调与其在神经元细胞周期调控中的作用有关,可能会对神经退行性病理的进展产生深远影响,使其成为许多神经退行性疾病背后的一个重要关键靶点。

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