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狂犬病病毒CVS-N2c(ΔG)株增强逆行性突触传递和神经元活力。

Rabies Virus CVS-N2c(ΔG) Strain Enhances Retrograde Synaptic Transfer and Neuronal Viability.

作者信息

Reardon Thomas R, Murray Andrew J, Turi Gergely F, Wirblich Christoph, Croce Katherine R, Schnell Matthias J, Jessell Thomas M, Losonczy Attila

机构信息

Departments of Neuroscience and Biochemistry and Molecular Biophysics, Howard Hughes Medical Institute, Columbia University, New York, NY 10032, USA.

Departments of Neuroscience and Biochemistry and Molecular Biophysics, Howard Hughes Medical Institute, Columbia University, New York, NY 10032, USA.

出版信息

Neuron. 2016 Feb 17;89(4):711-24. doi: 10.1016/j.neuron.2016.01.004. Epub 2016 Jan 21.

Abstract

Virally based transsynaptic tracing technologies are powerful experimental tools for neuronal circuit mapping. The glycoprotein-deletion variant of the SAD-B19 vaccine strain rabies virus (RABV) has been the reagent of choice in monosynaptic tracing, since it permits the mapping of synaptic inputs to genetically marked neurons. Since its introduction, new helper viruses and reagents that facilitate complementation have enhanced the efficiency of SAD-B19(ΔG) transsynaptic transfer, but there has been little focus on improvements to the core RABV strain. Here we generate a new deletion mutant strain, CVS-N2c(ΔG), and examine its neuronal toxicity and efficiency in directing retrograde transsynaptic transfer. We find that by comparison with SAD-B19(ΔG), the CVS-N2c(ΔG) strain exhibits a reduction in neuronal toxicity and a marked enhancement in transsynaptic neuronal transfer. We conclude that the CVS-N2c(ΔG) strain provides a more effective means of mapping neuronal circuitry and of monitoring and manipulating neuronal activity in vivo in the mammalian CNS.

摘要

基于病毒的跨突触示踪技术是用于神经元回路映射的强大实验工具。狂犬病病毒(RABV)SAD - B19疫苗株的糖蛋白缺失变体一直是单突触示踪中的首选试剂,因为它能够将突触输入映射到基因标记的神经元。自引入以来,促进互补作用的新型辅助病毒和试剂提高了SAD - B19(ΔG)跨突触转移的效率,但对核心RABV毒株的改进关注较少。在这里,我们生成了一种新的缺失突变株CVS - N2c(ΔG),并研究了其神经元毒性以及指导逆行跨突触转移的效率。我们发现,与SAD - B19(ΔG)相比,CVS - N2c(ΔG)毒株的神经元毒性降低,跨突触神经元转移显著增强。我们得出结论,CVS - N2c(ΔG)毒株为绘制神经元回路以及在哺乳动物中枢神经系统中体内监测和操纵神经元活动提供了一种更有效的方法。

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