Munich Center for Integrated Protein Science, Department of Pharmacy-Center for Drug Research, Ludwig-Maximilians-Universität München, Butenandstrasse 5-13, Munich, Germany.
Genes Brain Behav. 2011 Mar;10(2):137-48. doi: 10.1111/j.1601-183X.2010.00646.x. Epub 2010 Oct 7.
The role of the cyclic nucleotide-gated (CNG) channel CNGA3 is well established in cone photoreceptors and guanylyl cyclase-D-expressing olfactory neurons. To assess a potential function of CNGA3 in the mouse amygdala and hippocampus, we examined synaptic plasticity and performed a comparative analysis of spatial learning, fear conditioning and step-down avoidance in wild-type mice and CNGA3 null mutants (CNGA3(-/-) ). CNGA3(-/-) mice showed normal basal synaptic transmission in the amygdala and the hippocampus. However, cornu Ammonis (CA1) hippocampal long-term potentiation (LTP) induced by a strong tetanus was significantly enhanced in CNGA3(-/-) mice as compared with their wild-type littermates. Unlike in the hippocampus, LTP was not significantly altered in the amygdala of CNGA3(-/-) mice. Enhanced hippocampal LTP did not coincide with changes in hippocampus-dependent learning, as both wild-type and mutant mice showed a similar performance in water maze tasks and contextual fear conditioning, except for a trend toward higher step-down latencies in a passive avoidance task. In contrast, CNGA3(-/-) mice showed markedly reduced freezing to the conditioned tone in the amygdala-dependent cued fear conditioning task. In conclusion, our study adds a new entry on the list of physiological functions of the CNGA3 channel. Despite the dissociation between physiological and behavioral parameters, our data describe a so far unrecognized role of CNGA3 in modulation of hippocampal plasticity and amygdala-dependent fear memory.
环核苷酸门控(CNG)通道 CNGA3 在视锥细胞和表达鸟苷酸环化酶-D 的嗅觉神经元中的作用已得到充分证实。为了评估 CNGA3 在小鼠杏仁核和海马中的潜在功能,我们研究了突触可塑性,并对野生型小鼠和 CNGA3 缺失突变体(CNGA3(-/-))的空间学习、恐惧条件反射和下台阶回避进行了比较分析。CNGA3(-/-) 小鼠在杏仁核和海马中表现出正常的基础突触传递。然而,与野生型同窝仔相比,CNGA3(-/-) 小鼠 CA1 海马长时程增强(LTP)诱导的强烈抽搐明显增强。与海马不同,CNGA3(-/-) 小鼠杏仁核中的 LTP 没有明显改变。增强的海马 LTP 与海马依赖性学习的变化不一致,因为野生型和突变型小鼠在水迷宫任务和情景恐惧条件反射中表现出相似的性能,除了在被动回避任务中出现更高的下台阶潜伏期的趋势。相比之下,CNGA3(-/-) 小鼠在依赖于杏仁核的条件性恐惧条件反射任务中对条件性音调的冻结反应明显减少。总之,我们的研究为 CNGA3 通道的生理功能增加了一个新条目。尽管生理和行为参数之间存在分离,但我们的数据描述了 CNGA3 在调节海马体可塑性和依赖于杏仁核的恐惧记忆方面的一个迄今为止尚未被认识的作用。