Olfactory behavior and physiology are disrupted in prion protein knockout mice

嗅球 表型 PRNP公司 神经科学 生物 基因剔除小鼠 嗅觉系统 转基因小鼠 转基因 感觉系统 遗传学 基因 中枢神经系统 等位基因
作者
Claire E. Le Pichon,Matthew T. Valley,Magdalini Polymenidou,Alexander T. Chesler,Botir T. Sagdullaev,Adriano Aguzzi,Stuart Firestein
出处
期刊:Nature Neuroscience [Nature Portfolio]
卷期号:12 (1): 60-69 被引量:109
标识
DOI:10.1038/nn.2238
摘要

The normal physiological function of the prion protein PrPC remains unknown. Here, the authors report that PrP knockout mice show altered behavior in two olfactory tasks and that PrP deficiency affects oscillatory activity in the olfactory bulb. Both the behavioral and electrophysiological phenotypes could be rescued by transgenic neuronal-specific expression of PrPC. The prion protein PrPC is infamous for its role in disease, but its normal physiological function remains unknown. Here we found a previously unknown behavioral phenotype of Prnp−/− mice in an odor-guided task. This phenotype was manifest in three Prnp knockout lines on different genetic backgrounds, which provides strong evidence that the phenotype is caused by a lack of PrPC rather than by other genetic factors. Prnp−/− mice also showed altered behavior in a second olfactory task, suggesting that the phenotype is olfactory specific. Furthermore, PrPC deficiency affected oscillatory activity in the deep layers of the main olfactory bulb, as well as dendrodendritic synaptic transmission between olfactory bulb granule and mitral cells. Notably, both the behavioral and electrophysiological alterations found in Prnp−/− mice were rescued by transgenic neuronal-specific expression of PrPC. These data suggest that PrPC is important in the normal processing of sensory information by the olfactory system.

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