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全脑缺血诱导海马体中与细胞凋亡相关的基因。

Global ischemia induces apoptosis-associated genes in hippocampus.

作者信息

Honkaniemi J, Massa S M, Breckinridge M, Sharp F R

机构信息

Department of Neurology (127), University of California, San Francisco 94121, USA.

出版信息

Brain Res Mol Brain Res. 1996 Nov;42(1):79-88. doi: 10.1016/s0169-328x(96)00121-0.

Abstract

Using in situ hybridization, Northern blotting and RT-PCR we studied the post-ischemic expression of bcl-2, bcl-x, bax and ICE. One day following 5 min or 10 min of global ischemia bcl-2 and bcl-x mRNAs were induced in CA1 hippocampal pyramidal neurons while bax was unchanged. By 72 h after ischemia the expression of bcl-2, bcl-x and bax mRNAs decreased in CA1. The large isoform of bcl-x (bcl-xL), detected using RT-PCR, decreased in whole hippocampus by 24-72 h after ischemia relative to the putative short (bcl-xS) and transmembrane deleted (bcl-x delta TM) forms. Oligonucleotides to interleukin-1 beta convertase (ICE), which detected the expected 2-kb transcript and two lesser 1.5- and 3-kb hybridizing species, demonstrated slight mRNA induction in the CA1 region at 72 h following ischemia. DNA nick end-labeling at 3 days following ischemia showed DNA fragmentation in neurons limited to the CA1 region of hippocampus following 5 min ischemia, while DNA fragmentation was detected in CA1, CA3, dentate gyrus and cortical neurons following 10 min ischemia. The data support the view that hippocampal neurons might undergo an apoptosis-like death after global ischemia. Since global ischemia decreases total protein synthesis especially in the CA1 region, the increases in bcl-2 mRNA levels may not necessarily lead to increased Bcl-2 protein levels. This may explain why the CA1 neurons die despite the prominent induction of the protective bcl-2 gene. The observed decrease by 24 h in the bcl-xL/bcl-xS ratio which preceded DNA fragmentation may participate in the cell death produced by ischemia. However, because of the ischemia-induced decrease in total protein synthesis, the decreased bcl-xL/bcl-xS ratio does not necessarily lead to a changed ratio in the amount of the appropriate proteins. Since ICE-like mRNA was induced at 72 h when the CA1 neurons were dead, the significance of this ICE-like mRNA induction remains unclear.

摘要

我们运用原位杂交、Northern印迹法及逆转录聚合酶链反应(RT-PCR)研究了bcl-2、bcl-x、bax和白细胞介素-1β转换酶(ICE)在缺血后的表达情况。全脑缺血5分钟或10分钟后1天,海马CA1区锥体细胞神经元中bcl-2和bcl-x信使核糖核酸(mRNA)被诱导表达,而bax则无变化。缺血72小时后,CA1区bcl-2、bcl-x和bax mRNA的表达下降。运用RT-PCR检测到的bcl-x的大型异构体(bcl-xL),相对于假定的短型(bcl-xS)和跨膜缺失型(bcl-xδTM),在缺血后24至72小时,全海马中的表达下降。针对白细胞介素-1β转换酶(ICE)的寡核苷酸,检测到预期的2千碱基转录本以及另外两个较小的1.5千碱基和3千碱基杂交条带,显示缺血72小时后CA1区有轻微的mRNA诱导表达。缺血3天后进行的DNA缺口末端标记显示,缺血5分钟后,DNA片段化仅限于海马CA1区的神经元,而缺血10分钟后,在CA1、CA3、齿状回和皮质神经元中均检测到DNA片段化。这些数据支持这样一种观点,即全脑缺血后海马神经元可能经历类似凋亡的死亡过程。由于全脑缺血会降低总蛋白合成,尤其是在CA1区,bcl-2 mRNA水平的升高不一定会导致Bcl-2蛋白水平的升高。这或许可以解释为什么尽管保护性bcl-2基因有明显诱导表达,CA1神经元仍会死亡。在DNA片段化之前观察到的bcl-xL/bcl-xS比值在24小时内下降,可能参与了缺血导致的细胞死亡。然而,由于缺血引起的总蛋白合成下降,bcl-xL/bcl-xS比值的降低不一定会导致相应蛋白量的比例发生变化。由于当CA1神经元死亡时,在72小时诱导出了类似ICE的mRNA,这种类似ICE的mRNA诱导表达的意义仍不清楚。

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