Loss of CaV1.3 RNA editing enhances mouse hippocampal plasticity, learning, and memory

CaV1.3 RNA 编辑的丧失增强了小鼠海马的可塑性、学习能力和记忆力

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作者:Jing Zhai, Sheeja Navakkode, Sean Qing Zhang Yeow, Kumar Krishna-K, Mui Cheng Liang, Joanne Huifen Koh, Rui Xiong Wong, Wei Ping Yu, Sreedharan Sajikumar, Hua Huang, Tuck Wah Soong

Abstract

L-type CaV1.3 calcium channels are expressed on the dendrites and soma of neurons, and there is a paucity of information about its role in hippocampal plasticity. Here, by genetic targeting to ablate CaV1.3 RNA editing, we demonstrate that unedited CaV1.3ΔECS mice exhibited improved learning and enhanced long-term memory, supporting a functional role of RNA editing in behavior. Significantly, the editing paradox that functional recoding of CaV1.3 RNA editing sites slows Ca2+-dependent inactivation to increase Ca2+ influx but reduces channel open probability to decrease Ca2+ influx was resolved. Mechanistically, using hippocampal slice recordings, we provide evidence that unedited CaV1.3 channels permitted larger Ca2+ influx into the hippocampal pyramidal neurons to bolster neuronal excitability, synaptic transmission, late long-term potentiation, and increased dendritic arborization. Of note, RNA editing of the CaV1.3 IQ-domain was found to be evolutionarily conserved in mammals, which lends support to the importance of the functional recoding of the CaV1.3 channel in brain function.

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