Department of Physiology, Michigan State University, East Lansing, MI, United States.
Department of Physiology, Michigan State University, East Lansing, MI, United States.
Pharmacol Biochem Behav. 2018 Nov;174:2-8. doi: 10.1016/j.pbb.2018.04.008. Epub 2018 Apr 27.
Over the past half century, novel tools have allowed the characterization of myriad molecular underpinnings of neural phenomena including synaptic function, neurogenesis and neurodegeneration, membrane excitability, and neurogenetics/epigenetics. More recently, transgenic mice have made possible cell type-specific explorations of these phenomena and have provided critical models of many neurological and psychiatric diseases. However, it has become clear that many critical areas of study require tools allowing the study and manipulation of individual neural circuits within the brain, and viral vectors have come to the forefront in driving these circuit-specific studies. Here, we present a surface-level review of the general classes of viral vectors used for study of the brain, along with their suitability for circuit-specific studies. We then cover in detail a new long-lasting, retrograde expressing form of herpes simplex virus termed LT-HSV that has become highly useful in circuit-based studies. We detail some of its current uses and propose a variety of future uses for this critical new tool, including circuit-based transgene overexpression, gene editing, and gene expression profiling.
在过去的半个世纪中,新的工具使我们能够对包括突触功能、神经发生和神经退行性变、膜兴奋性以及神经遗传学/表观遗传学在内的神经现象的众多分子基础进行描述。最近,转基因小鼠使得对这些现象进行细胞类型特异性探索成为可能,并为许多神经和精神疾病提供了关键模型。然而,很明显,许多关键的研究领域需要能够研究和操纵大脑内单个神经回路的工具,而病毒载体在推动这些特定于回路的研究方面已处于领先地位。在这里,我们对用于研究大脑的病毒载体的一般类别进行了表面水平的回顾,以及它们对特定于回路的研究的适用性。然后,我们详细介绍了一种新型的、持久的、逆行表达的单纯疱疹病毒,称为 LT-HSV,它在基于回路的研究中非常有用。我们详细介绍了它的一些当前用途,并为这个关键的新工具提出了各种未来用途,包括基于回路的转基因过表达、基因编辑和基因表达谱分析。