...
首页> 外文期刊>Brain research. Molecular brain research >Distinctions between hippocampus of mouse and rat: protein F1/GAP-43 gene expression, promoter activity, and spatial memory.
【24h】

Distinctions between hippocampus of mouse and rat: protein F1/GAP-43 gene expression, promoter activity, and spatial memory.

机译:小鼠和大鼠海马之间的区别:蛋白F1 / GAP-43基因表达,启动子活性和空间记忆。

获取原文
获取原文并翻译 | 示例

摘要

We began these experiments as an attempt to replicate in the mouse the induction by kainate (KA) of F1/GAP-43 mRNA we observed in adult rat hippocampal granule cells [Mol. Brain Res., 33 (1995) 22-28]. However, even though KA induced behavioral seizures in the mouse similar to those in the rat, neither induction of F1/GAP-43 mRNA nor subsequent mossy fiber sprouting observed in the rat was detected in three different mouse strains. It was also surprising that the distribution of constitutive levels of F1/GAP-43 mRNA in mouse and rat hippocampus was qualitatively different. Indeed, F1/GAP-43 expression in CA3 pyramidal cells was significantly greater in rat than mouse, while F1/GAP-43 expression in CA1 cells of rat and mouse was equivalent using densitometric analysis. Thus, F1/GAP-43 expression in rat is quantitatively higher in CA3 and CA1 pyramidal cells. In mouse, expression was equivalent in these two subfields. In a transgenic mouse bearing a rat F1/GAP-43 promoter-reporter (lacZ) construct (line 252), in-vivo promoter activity of F1/GAP-43 was studied in hippocampal cells. Transgene expression in hippocampal pyramidal subfields, high in CA3, low in CA1 pyramidal cells, paralleled the distribution of rat F1/GAP-43 mRNA levels, not mouse. Differences in the constitutive F1/GAP-43 expression pattern in hippocampus between rat and mouse may therefore be determined by different recognition elements present on the F1/GAP-43 promoter. KA injected into the line 252 transgenic mouse did not activate the rat F1/GAP-43 promoter in mouse hippocampal granule cells. The absence of both F1/GAP-43 mRNA expression induction and promoter activation in mouse granule cells after KA is likely related to genera differences in transcriptional regulatory mechanisms, though post-transcriptional mechanisms cannot be excluded. Since the different hippocampal chemistry of F1/GAP-43 in rat and mouse likely extends to other molecular species, behaviors in rat and mouse that depend on hippocampal function might be different as well. We therefore evaluated spatial memory ability in a delayed matching-to-sample task. In contrast to rat, we were surprised to find no evidence of the ability to learn this task in three different mouse strains. Since interest in mouse genetics in relation to behavior and memory functions of hippocampus is growing, generalizations concerning hippocampal function from studies carried out on the mouse need to be made with caution considering the specific behavioral, pharmacological, and general molecular differences observed here. One can also be opportunistic and exploit the natural variations between these two genera to gain insight into the molecular mechanisms underlying information storage.
机译:我们开始这些实验是为了尝试在小鼠中复制我们在成年大鼠海马颗粒细胞中观察到的海藻酸盐(KA)对F1 / GAP-43 mRNA的诱导[Mol。 Brain Res。,33(1995)22-28]。但是,即使KA诱导的小鼠行为性癫痫发作与大鼠相似,在三种不同的小鼠品系中均未检测到F1 / GAP-43 mRNA的诱导以及随后在大鼠中观察到的苔藓纤维出芽。同样令人惊讶的是,小鼠和大鼠海马中F1 / GAP-43 mRNA组成型水平的分布在质量上是不同的。实际上,大鼠CA3锥体细胞中F1 / GAP-43的表达明显高于小鼠,而使用光密度分析法,大鼠和小鼠CA1细胞中的F1 / GAP-43的表达相当。因此,在大鼠CA3和CA1锥体细胞中F1 / GAP-43的表达在数量上更高。在小鼠中,这两个子域的表达相同。在带有大鼠F1 / GAP-43启动子-报告子(lacZ)构建体的转基因小鼠中(第252行),在海马细胞中研究了F1 / GAP-43的体内启动子活性。海马锥体细胞亚基中转基因的表达,CA3高,CA1锥体细胞低,与大鼠F1 / GAP-43 mRNA水平的分布平行,而不与小鼠相似。因此,大鼠和小鼠之间海马中本构性F1 / GAP-43表达模式的差异可以通过F1 / GAP-43启动子上存在的不同识别元件来确定。注入到252号转基因小鼠品系中的KA不能激活小鼠海马颗粒细胞中的大鼠F1 / GAP-43启动子。尽管不能排除转录后机制,但KA后小鼠颗粒细胞中F1 / GAP-43 mRNA表达的诱导和启动子激活的缺失可能与转录调控机制的属差异有关。由于F1 / GAP-43在大鼠和小鼠中的不同海马化学性质可能延伸到其他分子种类,因此依赖海马功能的大鼠和小鼠行为也可能有所不同。因此,我们在延迟匹配样本任务中评估了空间记忆能力。与大鼠相反,我们惊讶地发现没有证据表明可以在三种不同的小鼠品系中学习此任务。由于对与海马行为和记忆功能有关的小鼠遗传学的兴趣正在增长,因此,考虑到此处观察到的特定行为,药理和一般分子差异,需要谨慎地进行关于小鼠海马功能的概括。也可以是机会主义的,可以利用这两个属之间的自然变异来深入了解信息存储的分子机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号