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用膜锚定毒素沉默神经递质传递。

Silencing neurotransmission with membrane-tethered toxins.

机构信息

Molecular Neurobiology group, Max Delbrück Center for Molecular Medicine, Berlin, Germany.

出版信息

Nat Methods. 2010 Mar;7(3):229-36. doi: 10.1038/nmeth.1425. Epub 2010 Feb 7.

Abstract

At synaptic terminals, high voltage-activated Ca(v)2.1 and Ca(v)2.2 calcium channels have an essential and joint role in coupling the presynaptic action potential to neurotransmitter release. Here we show that membrane-tethered toxins allowed cell-autonomous blockade of each channel individually or simultaneously in mouse neurons in vivo. We report optimized constitutive, inducible and Cre recombinase-dependent lentiviral vectors encoding fluorescent recombinant toxins, and we also validated the toxin-based strategy in a transgenic mouse model. Toxins delivered by lentiviral vectors selectively inhibited the dopaminergic nigrostriatal pathway, and transgenic mice with targeted expression in nociceptive peripheral neurons displayed long-lasting suppression of chronic pain. Optimized tethered toxins are tools for cell-specific and temporal manipulation of ion channel-mediated activities in vivo, including blockade of neurotransmitter release.

摘要

在突触末端,高电压激活的 Ca(v)2.1 和 Ca(v)2.2 钙通道在将突触前动作电位耦联到神经递质释放中具有重要的共同作用。在这里,我们表明,膜固定毒素允许在体内的小鼠神经元中细胞自主地单独或同时阻断每个通道。我们报告了优化的组成型、诱导型和 Cre 重组酶依赖性慢病毒载体,其编码荧光重组毒素,并且我们还在转基因小鼠模型中验证了基于毒素的策略。通过慢病毒载体递送的毒素选择性地抑制多巴胺能黑质纹状体通路,并且在伤害感受性外周神经元中靶向表达的转基因小鼠显示出慢性疼痛的持久抑制。优化的固定毒素是在体内进行细胞特异性和时间性离子通道介导的活动操作的工具,包括神经递质释放的阻断。

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