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Expression of NGFI-B mRNA in a rat focal cerebral ischemia-reperfusion model
1Division of Neuroscience, Academia Sinica, Taipei, Taiwan, ROC. bmltn@ibms.sinica.edu.tw
Abstract:
Cerebral ischemia is known to induce the expression of several immediate early genes (IEGs), including c-fos and c-jun, which subsequently regulate a number of late effector genes. In this study, we examined the expression of NGFI-B (or nur 77) mRNA in a rat focal cerebral ischemia-reperfusion model. NGFI-B is a member of the IEGs which encodes for a nuclear receptor and is rapidly induced by nerve growth factor (NGF). Northern blot analysis showed a rapid but transient enhancement of NGFI-B mRNA, a peak level for which was observed at 30 min of reperfusion following 60 min ischemic insult. At the peak level, quantitative analysis of the blot indicated a 12-fold and 4-fold increase of NGFI-B mRNA in the ischemic cortex and ipsilateral hippocampus, respectively, as compared to the sham-operated control. No apparent changes in mRNA levels were observed within contralateral sites of the cortex. Results from in situ hybridization showed that severe ischemia (60 min) resulted in a marked increase of NGFI-B mRNA throughout the entire ischemic cerebral cortex. The increase was particularly notable in the frontal, occipital, perirhinal and piriform cortical regions and in the dentate gyrus and CAI-3 regions of the ipsilateral hippocampus. A marked induction was also noted in the ipsilateral caudate putamen. Unlike the induction profile of NGFI-B mRNA, severe ischemia resulted in bilateral increases of its family gene, NGFI-A mRNA. The spatial induction profile is similar to that of NGFI-B mRNA in both hemispheres, except within the region of the contralateral dentate gyrus which showed low levels of NGFI-A mRNA. The expression pattern of NGF and BDNF mRNA, upstream genes of NGFI-B, were also examined. Interestingly the temporal and spatial expression patterns of BDNF mRNA were very similar to that of NGFI-A mRNA under the same conditions, whereas increased NGF and NGFI-B mRNA were observed only in the ipsilateral hemisphere. It is likely that multiple and/or overlapping pathways are activated subsequent to ischemic challenge which in turn are crucial for cel survival and/or functional recovery following focal cerebral ischemia.
Insights
Cerebral ischemia rapidly increases NGFI-B mRNA in rats, peaking at 30 minutes of reperfusion. This immediate early gene (IEG) expression is crucial for cell survival and recovery after stroke.
Area of Science:
- Neuroscience
- Molecular Biology
- Ischemia Research
Background:
- Cerebral ischemia triggers immediate early gene (IEG) expression, including c-fos and c-jun, influencing downstream genes.
- NGFI-B (nur 77) is an IEG encoding a nuclear receptor, rapidly induced by nerve growth factor (NGF).
Purpose of the Study:
- To investigate the expression of NGFI-B mRNA in a rat model of focal cerebral ischemia-reperfusion.
- To understand the temporal and spatial patterns of NGFI-B mRNA induction following ischemic insult.
Main Methods:
- Utilized a rat focal cerebral ischemia-reperfusion model.
- Employed Northern blot analysis to quantify NGFI-B mRNA levels.
- Conducted in situ hybridization to determine the spatial distribution of NGFI-B mRNA.
Main Results:
- NGFI-B mRNA showed rapid, transient enhancement, peaking at 30 minutes of reperfusion after 60 minutes of ischemia.
- A 12-fold increase in NGFI-B mRNA was observed in the ischemic cortex and a 4-fold increase in the ipsilateral hippocampus.
- Severe ischemia induced NGFI-B mRNA throughout the ischemic cortex and hippocampus, with notable increases in specific regions and the caudate putamen.
Conclusions:
- Focal cerebral ischemia significantly upregulates NGFI-B mRNA expression in a time- and region-specific manner.
- The induction patterns of NGFI-B, NGFI-A, NGF, and BDNF mRNA suggest complex, overlapping pathways activated during ischemic challenge.
- These pathways are likely critical for neuronal survival and functional recovery following focal cerebral ischemia.