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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Decreased anxiety, altered place learning, and increased CA1 basal excitatory synaptic transmission in mice with conditional ablation of the neural cell adhesion molecule L1.
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Decreased anxiety, altered place learning, and increased CA1 basal excitatory synaptic transmission in mice with conditional ablation of the neural cell adhesion molecule L1.

机译:在条件性消融神经细胞粘附分子L1的小鼠中,焦虑降低,位置学习改变,CA1基础兴奋性突触传递增加。

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摘要

L1, a neural cell adhesion molecule of the immunoglobulin superfamily, is involved in neuronal migration and differentiation and axon outgrowth and guidance. Mutations in the human and mouse L1 gene result in similarly severe neurological abnormalities. To dissociate the functional roles of L1 in the adult brain from developmental abnormalities, we have generated a mutant in which the L1 gene is inactivated by cre-recombinase under the control of the calcium/calmodulin-dependent kinase II promoter. This mutant (L1fy+) did not show the overt morphological and behavioral abnormalities observed previously in constitutive L1-deficient (L1-/-) mice; however, there was an increase in basal excitatory synaptic transmission that was not apparent in L1-/- mice. Similar to L1-/- mice, no defects in short- and long-term potentiation in the CA1 region of the hippocampus were observed. Interestingly, L1fy+ mice showed decreased anxiety in the open field and elevated plus-maze, contrary to L1-/- mice, and altered place learning in the water maze, similar to L1-/- mice. Thus, mice conditionally deficient in L1 expression in the adult brain share some abnormalities, but also display different ones, as compared with L1-/- mice, highlighting the role of L1 in the regulation of synaptic transmission and behavior in adulthood.
机译:L1是免疫球蛋白超家族的神经细胞粘附分子,参与神经元的迁移和分化以及轴突的生长和引导。人类和小鼠L1基因的突变会导致类似的严重神经异常。为了从发育异常中分离出L1在成人大脑中的功能,我们产生了一个突变体,其中L1基因在钙/钙调蛋白依赖性激酶II启动子的控制下被cre重组酶灭活。该突变体(L1fy +)并未表现出先前在组成型L1缺陷(L1-/-)小鼠中观察到的明显的形态学和行为异常。但是,基础兴奋性突触传递增加,这在L1-/-小鼠中并不明显。与L1-/-小鼠相似,在海马CA1区没有观察到短期和长期增强的缺陷。有趣的是,与L1-/-小鼠相反,L1fy +小鼠在旷野中表现出的焦虑减轻和正迷宫升高,与L1-/-小鼠相反,在水迷宫中的位置学习发生了变化。因此,与L1-/-小鼠相比,成年脑中有条件地缺乏L1表达的小鼠具有一些异常,但也表现出不同的异常,从而突显了L1在调节成年突触传递和行为中的作用。

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