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利用表达 EGFP 的基因改造单纯疱疹病毒进行顺行性神经元回路示踪。

Anterograde neuronal circuit tracing using a genetically modified herpes simplex virus expressing EGFP.

机构信息

School of Biomedical Sciences, University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

J Neurosci Methods. 2012 Jul 30;209(1):158-67. doi: 10.1016/j.jneumeth.2012.05.035. Epub 2012 Jun 9.

Abstract

Insights into the anatomical organization of complex neural circuits provide important information about function, and thus tools that facilitate neuroanatomical studies have proved invaluable in neuroscience. Advances in molecular cloning have allowed the production of novel recombinant neuroinvasive viruses for use in transynaptic neural tracing studies. However, the vast majority of these viruses have motility in the retrograde direction only, therefore limiting their use to studies of synaptic input circuitry. Here we describe the construction of an EGFP reporting herpes simplex virus, strain H129, which preferentially moves along synaptically connected neurons in the anterograde direction. In vitro and in vivo characterization studies confirm that the HSV-1 H129-EGFP retains comparable replication and neuroinvasiveness as the wildtype H129 virus. As a proof of principle we confirm anterograde movement of the H129-EGFP along polysynaptic pathways by inoculating the upper airways and tracking time-dependent EGFP expression in previously described ascending sensory pathways. These data confirm a genomic locus for recombining HSV-1 H129 such that normal viral function and replication is maintained. Novel viral recombinants such as HSV-1 H129-EGFP will be useful tools for delineating the central organization of peripheral sensory pathways as well as the synaptic outputs from central neuronal populations.

摘要

深入了解复杂神经回路的解剖组织提供了有关功能的重要信息,因此,有助于神经解剖学研究的工具已被证明对神经科学非常有价值。分子克隆技术的进步使得新型重组神经侵袭性病毒可用于突触传递神经追踪研究。然而,这些病毒绝大多数仅具有逆行运动性,因此限制了它们在突触输入回路研究中的应用。在这里,我们描述了一种 EGFP 报告单纯疱疹病毒,株 H129 的构建,该病毒优先沿顺行方向在突触连接的神经元中移动。体外和体内特性研究证实,HSV-1 H129-EGFP 保留了与野生型 H129 病毒相当的复制和神经侵袭性。作为原理的证明,我们通过接种上呼吸道并跟踪先前描述的上升感觉途径中时间依赖性 EGFP 表达,确认了 H129-EGFP 沿多突触途径的顺行运动。这些数据证实了重组 HSV-1 H129 的基因组位置,从而维持了正常的病毒功能和复制。新型病毒重组体,如 HSV-1 H129-EGFP,将是描绘外周感觉途径的中枢组织以及中枢神经元群体的突触输出的有用工具。

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