New Rabies Virus Variants for Monitoring and Manipulating Activity and Gene Expression in Defined Neural Circuits

被引:239
作者
Osakada, Fumitaka [1 ]
Mori, Takuma [1 ]
Cetin, Ali H. [1 ]
Marshel, James H. [1 ]
Virgen, Beatriz [1 ]
Callaway, Edward M. [1 ]
机构
[1] Salk Inst Biol Studies, Syst Neurobiol Labs, La Jolla, CA 92037 USA
基金
美国国家卫生研究院; 日本学术振兴会;
关键词
IN-VIVO; TRANSGENIC MICE; NEURONS; SINGLE; RECOMBINANT; SUBTYPES; NETWORKS; SPECIFICITY; PHYSIOLOGY; DISSECTION;
D O I
10.1016/j.neuron.2011.07.005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Glycoprotein-deleted (Delta G) rabies virus is a powerful tool for studies of neural circuit structure. Here, we describe the development and demonstrate the utility of new resources that allow experiments directly investigating relationships between the structure and function of neural circuits. New methods and reagents allowed efficient production of 12 novel Delta G rabies variants from plasmid DNA. These new rabies viruses express useful neuroscience tools, including the Ca2+ indicator GCaMP3 for monitoring activity; Channelrhodopsin-2 for photoactivation; allatostatin receptor for inactivation by ligand application; and rtTA, ER(T2)CreER(T2), or FLPo, for control of gene expression. These new tools allow neurons targeted on the basis of their connectivity to have their function assayed or their activity or gene expression manipulated. Combining these tools with in vivo imaging and optogenetic methods and/or inducible gene expression in transgenic mice will facilitate experiments investigating neural circuit development, plasticity, and function that have not been possible with existing reagents.
引用
收藏
页码:617 / 631
页数:15
相关论文
共 70 条
[1]   In vivo light-induced activation of neural circuitry in transgenic mice expressing channelrhodopsin-2 [J].
Arenkiel, Benjamin R. ;
Peca, Joao ;
Davison, Ian G. ;
Feliciano, Catia ;
Deisseroth, Karl ;
Augustine, George J. ;
Ehlers, Michael D. ;
Feng, Guoping .
NEURON, 2007, 54 (02) :205-218
[2]   Molecular genetics and imaging technologies for circuit-based neuroanatomy [J].
Arenkiel, Benjamin R. ;
Ehlers, Michael D. .
NATURE, 2009, 461 (7266) :900-907
[3]   Reverse physiology in Drosophila:: identification of a novel allatostatin-like neuropeptide and its cognate receptor structurally related to the mammalian somatostatin/galanin/opioid receptor family [J].
Birgül, N ;
Weise, C ;
Kreienkamp, HJ ;
Richter, D .
EMBO JOURNAL, 1999, 18 (21) :5892-5900
[4]  
Boldogköi Z, 2009, NAT METHODS, V6, P127, DOI [10.1038/NMETH.1292, 10.1038/nmeth.1292]
[5]   Millisecond-timescale, genetically targeted optical control of neural activity [J].
Boyden, ES ;
Zhang, F ;
Bamberg, E ;
Nagel, G ;
Deisseroth, K .
NATURE NEUROSCIENCE, 2005, 8 (09) :1263-1268
[6]   Talking about a revolution: The impact of site-specific recombinases on genetic analyses in mice [J].
Branda, CS ;
Dymecki, SM .
DEVELOPMENTAL CELL, 2004, 6 (01) :7-28
[7]   Two modes of pseudorabies virus neuroinvasion and lethality in mice [J].
Brittle, EE ;
Reynolds, AE ;
Enquist, LW .
JOURNAL OF VIROLOGY, 2004, 78 (23) :12951-12963
[8]   Generation of bovine respiratory syncytial virus (BRSV) from cDNA: BRSV NS2 is not essential for virus replication in tissue culture, and the human RSV leader region acts as a functional BRSV genome promoter [J].
Buchholz, UJ ;
Finke, S ;
Conzelmann, KK .
JOURNAL OF VIROLOGY, 1999, 73 (01) :251-259
[9]   Transneuronal circuit tracing with neurotropic viruses [J].
Callaway, Edward M. .
CURRENT OPINION IN NEUROBIOLOGY, 2008, 18 (06) :617-623
[10]  
Card J P, 2001, Curr Protoc Neurosci, VChapter 1, DOI 10.1002/0471142301.ns0105s09