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在缺血诱导的CA1神经元死亡之前,FosB和Jun表达升高,而NGFI-A和JunB水平降低。

Ischemia-induced CA1 neuronal death is preceded by elevated FosB and Jun expression and reduced NGFI-A and JunB levels.

作者信息

McGahan L, Hakim A M, Nakabeppu Y, Robertson G S

机构信息

Department of Pharmacology, Faculty of Medicine, University of Ottawa, 451 Smyth Road, Ottawa, Ontario, Canada.

出版信息

Brain Res Mol Brain Res. 1998 May;56(1-2):146-61. doi: 10.1016/s0169-328x(98)00039-4.

Abstract

Alterations in levels of the immediate-early gene (IEG) proteins Fos, FosB, DeltaFosB, Jun, JunB, JunD, and NGFI-A were investigated in rat hippocampus by immunohistochemistry 2, 12, 24, and 48 h after forebrain ischemia. Transient global ischemia of 20 min, produced by four vessel occlusion (4-VO), elicited different patterns of IEG expression in vulnerable CA1 and more resilient CA3 neurons. Cell counts revealed that except for JunD and NGFI-A, immunoreactivity for all examined IEGs was initially elevated by forebrain ischemia in both CA1 and CA3 hippocampal subfields. However, distinct patterns of IEG expression became evident in these regions at later time points. The pivotal difference was the persistence of ischemia-induced elevations of FosB and Jun expression in the CA1 region of the hippocampus. Unlike CA3 neurons, where IEG immunoreactivity had subsided to basal levels by 24-48 h, CA1 neurons continued to display increased FosB- and Jun-like immunoreactivity 48 h post-ischemia. Western blot analysis revealed that elevated expression of both FosB and DeltaFosB-like proteins were responsible for the immunohistochemical detection of enhanced FosB-like immunoreactivity in CA1 neurons at 48 h. These findings are consistent with recent in vitro studies that implicate FosB and Jun in gene signalling pathways responsible for programmed cell death. In contrast to FosB and Jun, JunB expression declined significantly below basal levels in CA1 neurons at 48 h, yet remained unaltered in CA3 neurons. Given that JunB can inhibit the transactivating properties of Jun, decreased JunB levels may contribute to the apoptotic death of CA1 neurons by enhancing the transcriptional regulating activity of Jun. Also notable at 48 h was the complete loss of constitutive NGFI-A expression from CA1 neurons of ischemic animals. These findings suggest that persistent elevations in FosB and Jun expression, concurrent with reductions in JunB and NGFI-A levels, contribute to the apoptotic death of CA1 neurons after forebrain ischemia.

摘要

在前脑缺血后2小时、12小时、24小时和48小时,通过免疫组织化学方法研究了即刻早期基因(IEG)蛋白Fos、FosB、DeltaFosB、Jun、JunB、JunD和NGFI-A在大鼠海马体中的水平变化。通过四动脉闭塞(4-VO)产生的20分钟短暂性全脑缺血,在易损的CA1神经元和更具韧性的CA3神经元中引发了不同的IEG表达模式。细胞计数显示,除了JunD和NGFI-A外,在CA1和CA3海马亚区,所有检测的IEG的免疫反应性最初都因前脑缺血而升高。然而,在这些区域,IEG表达的不同模式在后期时间点变得明显。关键的差异在于,海马体CA1区缺血诱导的FosB和Jun表达升高持续存在。与CA3神经元不同,CA3神经元的IEG免疫反应性在24 - 48小时时已降至基础水平,而CA1神经元在缺血后48小时仍继续显示出增加的FosB和Jun样免疫反应性。蛋白质印迹分析表明,FosB和DeltaFosB样蛋白的表达升高是导致48小时时CA1神经元中FosB样免疫反应性增强的免疫组织化学检测结果的原因。这些发现与最近的体外研究一致,这些研究表明FosB和Jun参与了负责程序性细胞死亡的基因信号通路。与FosB和Jun相反,48小时时CA1神经元中的JunB表达显著下降至基础水平以下,但在CA3神经元中保持不变。鉴于JunB可以抑制Jun的反式激活特性,JunB水平的降低可能通过增强Jun的转录调节活性而导致CA1神经元的凋亡死亡。同样值得注意的是,在48小时时,缺血动物的CA1神经元中组成型NGFI-A表达完全丧失。这些发现表明,FosB和Jun表达的持续升高,同时伴有JunB和NGFI-A水平的降低,促成了前脑缺血后CA1神经元的凋亡死亡。

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