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抑制诱导型环磷腺苷早期阻遏物(ICERs)可部分保护神经元免于程序性细胞死亡。

Silencing of ICERs (Inducible cAMP Early Repressors) results in partial protection of neurons from programmed cell death.

出版信息

Neurobiol Dis. 2012 Feb;45(2):701-10. doi: 10.1016/j.nbd.2011.10.015. Epub 2011 Oct 25.

DOI:10.1016/j.nbd.2011.10.015
PMID:22044735
Abstract

ICERs proteins (Inducible cAMP Early Repressors) are the most effective endogenous repressors of CREB/CREM/ATF transcription factors family (CREB-cAMP Responsive Element Binding protein, CREM-cAMP Responsive Element Modulator, ATF-Activating Transcription Factor) that have repeatedly been shown to have a prosurvival function. It has been reported previously that neuronal death is accompanied by increased expression of ICERs and, furthermore, their overexpression provokes neuronal cell death in culture. However, it was not explained whether endogenously activated by proapoptotic stimuli ICERs contribute to the neuronal cell death. Herein, we have examined the involvement of endogenous ICERs in the apoptosis by checking whether it is possible to protect neurons from cell death by blocking the ICER gene. We applied two different in vitro models of neuronal death of primary neuronal cultures: excitotoxic death of neurons derived from dentate gyrus, and cortical cell loss provoked by trophic deprivation. Using the lentiviral vector (LV) to deliver shRNA, specifically silencing ICERs, but not other CREM proteins, we have found that silencing of ICERs enhances the CRE-driven transcription and exerts a mild, although significant, neuroprotective effect in both models. Since we demonstrated that silencing of endogenous ICERs have protective effect on neurons exposed to apoptosis-provoking conditions, targeting ICERs might be a novel strategy to prevent neuronal loss during degenerative processes.

摘要

ICERs 蛋白(诱导型 cAMP 早期抑制剂)是 CREB/CREM/ATF 转录因子家族(CREB-cAMP 反应元件结合蛋白、CREM-cAMP 反应元件调节剂、ATF-激活转录因子)中最有效的内源性抑制剂,已反复证明其具有促生存功能。先前有报道称,神经元死亡伴随着 ICERs 的表达增加,并且它们的过表达在培养物中引发神经元细胞死亡。然而,并没有解释内源性激活的促凋亡刺激物 ICERs 是否有助于神经元细胞死亡。在此,我们通过检查是否可以通过阻断 ICER 基因来保护神经元免于细胞死亡,从而检查内源性 ICERs 是否参与细胞凋亡。我们应用了两种不同的原代神经元培养物的体外神经元死亡模型:齿状回神经元的兴奋性死亡,以及营养剥夺引起的皮质细胞丢失。我们使用慢病毒载体(LV)传递 shRNA,特异性沉默 ICERs,但不沉默其他 CREM 蛋白,发现沉默 ICERs 增强了 CRE 驱动的转录,并在两种模型中均发挥了轻度但显著的神经保护作用。由于我们证明了沉默内源性 ICERs 对暴露于促凋亡条件的神经元具有保护作用,因此针对 ICERs 可能是预防退行性过程中神经元丢失的一种新策略。

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