Neurexins cluster voltage-gated Ca2+ channels within the presynaptic active zone
编号:44 访问权限:仅限参会人 更新:2021-08-03 19:11:29 浏览:633次 张贴报告

报告开始:2021年08月07日 18:20(Asia/Shanghai)

报告时间:20min

所在会场:[S2] Poster session [Po] Poster session

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摘要
To achieve ultrafast neurotransmission, neurons assemble synapses with highly organized presynaptic and postsynaptic nanomachines that are aligned by synaptic adhesion molecules. How functional assembly of presynaptic active zones is controlled via trans-synaptic interactions remains unknown. Here, we conditionally deleted all three neurexin adhesion molecules from presynaptic neurons of the calyx of Held in the mouse auditory system, a model synapse that allows precise biophysical analyses of synaptic properties. The pan-neurexin deletion had no effect on synapse development or the basic release machinery, but dramatically impaired fast neurotransmitter release. The overall properties of presynaptic calcium ion channels appeared normal, as reflected by the similar characteristics of calcium currents recorded at the nerve terminals. However, the pan-neurexin deletion significantly impaired the tight coupling of calcium influx to exocytosis, thereby suppressing neurotransmitter release. Furthermore, the pan-neurexin deletion reduced the function of calcium-activated BK potassium channels, whose activation depends on their tight association with presynaptic calcium channels. Together, these results suggest that neurexins perform a major function at the calyx synapse in coupling presynaptic calcium channels to release sites.
关键词
voltage-gated calcium channel,BK channel,synapse,active zone,neurotransmission
报告人
罗富均
生物岛实验室

稿件作者
罗富均 生物岛实验室
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重要日期
  • 会议日期

    08月06日

    2021

    08月09日

    2021

  • 08月09日 2021

    注册截止日期

主办单位
中国神经科学学会离子通道与受体分会
承办单位
河北工业大学
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