Molecular and Cellular Approaches for Diversifying and Extending Optogenetics

被引:734
作者
Gradinaru, Viviana [1 ,2 ]
Zhang, Feng [1 ]
Ramakrishnan, Charu [1 ]
Mattis, Joanna [1 ,2 ]
Prakash, Rohit [1 ,2 ]
Diester, Ilka [1 ]
Goshen, Inbal [1 ]
Thompson, Kimberly R. [1 ]
Deisseroth, Karl [1 ,3 ,4 ]
机构
[1] Stanford Univ, Dept Bioengn, Stanford, CA 94305 USA
[2] Stanford Univ, Program Neurosci, Stanford, CA 94305 USA
[3] Stanford Univ, Dept Psychiat & Behav Sci, Stanford, CA 94305 USA
[4] Stanford Univ, Howard Hughes Med Inst, Stanford, CA 94305 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
EXCITATORY CORTICAL-NEURONS; IN-VIVO CONTROL; OPTICAL CONTROL; MILLISECOND-TIMESCALE; ADENOASSOCIATED VIRUS; EXPRESSION; ACTIVATION; RHODOPSIN; PROTEINS; HALORHODOPSIN;
D O I
10.1016/j.cell.2010.02.037
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Optogenetic technologies employ light to control biological processes within targeted cells in vivo with high temporal precision. Here, we show that application of molecular trafficking principles can expand the optogenetic repertoire along several long-sought dimensions. Subcellular and transcellular trafficking strategies now permit (1) optical regulation at the far-red/infrared border and extension of optogenetic control across the entire visible spectrum, (2) increased potency of optical inhibition without increased light power requirement (nanoampere-scale chloride-mediated photocurrents that maintain the light sensitivity and reversible, step-like kinetic stability of earlier tools), and (3) generalizable strategies for targeting cells based not only on genetic identity, but also on morphology and tissue topology, to allow versatile targeting when promoters are not known or in genetically intractable organisms. Together, these results illustrate use of cell-biological principles to enable expansion of the versatile fast optogenetic technologies suitable for intact-systems biology and behavior.
引用
收藏
页码:154 / 165
页数:12
相关论文
共 78 条
  • [1] Neural substrates of awakening probed with optogenetic control of hypocretin neurons
    Adamantidis, Antoine R.
    Zhang, Feng
    Aravanis, Alexander M.
    Deisseroth, Karl
    De Lecea, Luis
    [J]. NATURE, 2007, 450 (7168) : 420 - U9
  • [2] Temporally precise in vivo control of intracellular signalling
    Airan, Raag D.
    Thompson, Kimberly R.
    Fenno, Lief E.
    Bernstein, Hannah
    Deisseroth, Karl
    [J]. NATURE, 2009, 458 (7241) : 1025 - 1029
  • [3] An optical neural interface:: in vivo control of rodent motor cortex with integrated fiberoptic and optogenetic technology
    Aravanis, Alexander M.
    Wang, Li-Ping
    Zhang, Feng
    Meltzer, Leslie A.
    Mogri, Murtaza Z.
    Schneider, M. Bret
    Deisseroth, Karl
    [J]. JOURNAL OF NEURAL ENGINEERING, 2007, 4 (03) : S143 - S156
  • [4] In vivo light-induced activation of neural circuitry in transgenic mice expressing channelrhodopsin-2
    Arenkiel, Benjamin R.
    Peca, Joao
    Davison, Ian G.
    Feliciano, Catia
    Deisseroth, Karl
    Augustine, George J.
    Ehlers, Michael D.
    Feng, Guoping
    [J]. NEURON, 2007, 54 (02) : 205 - 218
  • [5] Optical control of zebrafish behavior with halorhodopsin
    Arrenberg, Aristides B.
    Del Bene, Filippo
    Baier, Herwig
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (42) : 17968 - 17973
  • [6] Bi-stable neural state switches
    Berndt, Andre
    Yizhar, Ofer
    Gunaydin, Lisa A.
    Hegemann, Peter
    Deisseroth, Karl
    [J]. NATURE NEUROSCIENCE, 2009, 12 (02) : 229 - 234
  • [7] Ectopic expression of a microbial-type rhodopsin restores visual responses in mice with photoreceptor degeneration
    Bi, AD
    Cui, JJ
    Ma, YP
    Olshevskaya, E
    Pu, ML
    Dizhoor, AM
    Pan, ZH
    [J]. NEURON, 2006, 50 (01) : 23 - 33
  • [8] Synaptic modifications in cultured hippocampal neurons: Dependence on spike timing, synaptic strength, and postsynaptic cell type
    Bi, GQ
    Poo, MM
    [J]. JOURNAL OF NEUROSCIENCE, 1998, 18 (24) : 10464 - 10472
  • [9] Millisecond-timescale, genetically targeted optical control of neural activity
    Boyden, ES
    Zhang, F
    Bamberg, E
    Nagel, G
    Deisseroth, K
    [J]. NATURE NEUROSCIENCE, 2005, 8 (09) : 1263 - 1268
  • [10] Recombinant AAV viral vectors pseudotyped with viral capsids from serotypes 1, 2, and 5 display differential efficiency and cell tropism after delivery to different regions of the central nervous system
    Burger, C
    Gorbatyuk, OS
    Velardo, MJ
    Peden, CS
    Williams, P
    Zolotukhin, S
    Reier, PJ
    Mandel, RJ
    Muzyczka, N
    [J]. MOLECULAR THERAPY, 2004, 10 (02) : 302 - 317