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在成年果蝇的感觉神经元中,Notch对于嗅觉回路的形态和功能可塑性是必需的。

Notch is required in adult Drosophila sensory neurons for morphological and functional plasticity of the olfactory circuit.

作者信息

Kidd Simon, Struhl Gary, Lieber Toby

机构信息

Department of Genetics and Development, Columbia University College of Physicians and Surgeons, New York, New York, United States of America.

出版信息

PLoS Genet. 2015 May 26;11(5):e1005244. doi: 10.1371/journal.pgen.1005244. eCollection 2015 May.

Abstract

Olfactory receptor neurons (ORNs) convey odor information to the central brain, but like other sensory neurons were thought to play a passive role in memory formation and storage. Here we show that Notch, part of an evolutionarily conserved intercellular signaling pathway, is required in adult Drosophila ORNs for the structural and functional plasticity of olfactory glomeruli that is induced by chronic odor exposure. Specifically, we show that Notch activity in ORNs is necessary for the odor specific increase in the volume of glomeruli that occurs as a consequence of prolonged odor exposure. Calcium imaging experiments indicate that Notch in ORNs is also required for the chronic odor induced changes in the physiology of ORNs and the ensuing changes in the physiological response of their second order projection neurons (PNs). We further show that Notch in ORNs acts by both canonical cleavage-dependent and non-canonical cleavage-independent pathways. The Notch ligand Delta (Dl) in PNs switches the balance between the pathways. These data define a circuit whereby, in conjunction with odor, N activity in the periphery regulates the activity of neurons in the central brain and Dl in the central brain regulates N activity in the periphery. Our work highlights the importance of experience dependent plasticity at the first olfactory synapse.

摘要

嗅觉受体神经元(ORN)将气味信息传递至中枢脑,但与其他感觉神经元一样,曾被认为在记忆形成和存储中发挥被动作用。在此我们表明,Notch作为一种进化上保守的细胞间信号通路的一部分,在成年果蝇的ORN中是慢性气味暴露诱导的嗅觉小球结构和功能可塑性所必需的。具体而言,我们表明ORN中的Notch活性对于因长时间气味暴露而导致的小球体积的气味特异性增加是必要的。钙成像实验表明,ORN中的Notch对于慢性气味诱导的ORN生理学变化以及随后其二级投射神经元(PN)生理反应的变化也是必需的。我们进一步表明,ORN中的Notch通过经典的依赖切割和非经典的非依赖切割途径发挥作用。PN中的Notch配体Delta(Dl)可调节这两种途径之间的平衡。这些数据定义了一个回路,即在外周,与气味一起,Notch活性调节中枢脑中神经元的活性,而在中枢脑中,Dl调节外周的Notch活性。我们的工作突出了在第一个嗅觉突触处依赖经验的可塑性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f156/4444342/cd13c6e289c7/pgen.1005244.g001.jpg

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