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首页> 外文期刊>Neuropharmacology >Hippocampus-dependent learning and memory is impaired in mice lacking the Ras-guanine-nucleotide releasing factor 1 (Ras-GRF1).
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Hippocampus-dependent learning and memory is impaired in mice lacking the Ras-guanine-nucleotide releasing factor 1 (Ras-GRF1).

机译:在缺少Ras-鸟嘌呤核苷酸释放因子1(Ras-GRF1)的小鼠中,海马依赖性学习和记忆受到损害。

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摘要

Previous results have suggested that the Ras signaling pathway is involved in learning and memory. Ras is activated by nucleotide exchange factors, such as the calmodulin-activated guanine-nucleotide releasing factor 1 (Ras-GRF1). To test whether Ras-GRF1 is required for learning and memory, we inactivated the Ras-GRF1 gene in mice. These mutants performed normally in a rota-rod motor coordination task, and in two amygdala-dependent tasks (inhibitory avoidance and contextual conditioning). In contrast the mutants were impaired in three hippocampus-dependent learning tasks: contextual discrimination, the social transmission of food preferences, and the hidden-platform version of the Morris water maze. These studies indicate that Ras-GRF1 plays a role in hippocampal-dependent learning and memory.
机译:先前的结果表明,Ras信号通路与学习和记忆有关。 Ras被核苷酸交换因子激活,例如钙调蛋白激活的鸟嘌呤核苷酸释放因子1(Ras-GRF1)。为了测试Ras-GRF1是否是学习和记忆所必需的,我们灭活了Ras-GRF1基因在小鼠中。这些突变体通常在旋转杆运动协调任务和两个依赖杏仁核的任务(抑制回避和情境调节)中正常执行。相比之下,这些突变体在三项依赖海马的学习任务中受到损害:情境歧视,食物偏好的社会传递以及莫里斯水迷宫的隐藏平台版本。这些研究表明,Ras-GRF1在海马依赖性学习和记忆中发挥作用。

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