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Development of Pseudorabies Virus Strains Expressing Red Fluorescent Proteins: New Tools for Multisynaptic Labeling Applications

机译:表达红色荧光蛋白的伪狂犬病病毒株的开发:用于多突触标记应用的新工具。

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摘要

The transsynaptic retrograde transport of the pseudorabies virus Bartha (PRV-Bartha) strain has become an important neuroanatomical tract-tracing technique. Recently, dual viral transneuronal labeling has been introduced by employing recombinant strains of PRV-Bartha engineered to express different reporter proteins. Dual viral transsynaptic tracing has the potential of becoming an extremely powerful method for defining connections of single neurons to multiple neural circuits in the brain. However, the present use of recombinant strains of PRV expressing different reporters that are driven by different promoters, inserted in different regions of the viral genome, and detected by different methods limits the potential of these recombinant virus strains as useful reagents. We previously constructed and characterized PRV152, a PRV-Bartha derivative that expresses the enhanced green fluorescent protein. The development of a strain isogenic to PRV152 and differing only in the fluorescent reporter would have great utility for dual transsynaptic tracing. In this report, we describe the construction, characterization, and application of strain PRV614, a PRV-Bartha derivative expressing a novel monomeric red fluorescent protein, mRFP1. In contrast to viruses expressing DsRed and DsRed2, PRV614 displayed robust fluorescence both in cell culture and in vivo following transsynaptic transport through autonomic circuits afferent to the eye. Transneuronal retrograde dual PRV labeling has the potential to be a powerful addition to the neuroanatomical tools for investigation of neuronal circuits; the use of strain PRV614 in combination with strain PRV152 will eliminate many of the pitfalls associated with the presently used pairs of PRV recombinants.
机译:伪狂犬病病毒Bartha(PRV-Bartha)株的跨突触逆行运输已成为一种重要的神经解剖学道追踪技术。近来,通过使用经工程改造以表达不同报道蛋白的PRV-Bartha的重组菌株,引入了双重病毒跨神经元标记。双病毒突触追踪有可能成为一种非常强大的方法,用于定义单个神经元与大脑中多个神经回路的连接。然而,目前表达由不同启动子驱动,插入到病毒基因组的不同区域并通过不同方法检测的不同报道基因的PRV重组株的使用限制了这些重组病毒株作为有用试剂的潜力。我们先前构建并鉴定了PRV152,它是表达增强的绿色荧光蛋白的PRV-Bartha衍生物。与PRV152等基因且仅在荧光报告基因上有所不同的菌株的开发将对双重跨突触追踪具有很大的实用性。在本报告中,我们描述了PRV614菌株的构建,表征和应用,PRV614菌株是表达新型单体红色荧光蛋白mRFP1的PRV-Bartha衍生物。与表达DsRed和DsRed2的病毒相反,PRV614在通过突触传递到眼部的自主回路进行突触转运后,在细胞培养和体内均显示出强大的荧光。经神经元逆行双重PRV标记有可能成为研究神经元回路的神经解剖工具的有力补充。将PRV614菌株与PRV152菌株结合使用将消除许多与目前使用的PRV重组体对相关的陷阱。

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