Mahn Mathias, Prigge Matthias, Ron Shiri, Levy Rivka, Yizhar Ofer
Department of Neurobiology, Weizmann Institute of Science, Rehovot, Israel.
Nat Neurosci. 2016 Apr;19(4):554-6. doi: 10.1038/nn.4266. Epub 2016 Mar 7.
We investigated the efficacy of optogenetic inhibition at presynaptic terminals using halorhodopsin, archaerhodopsin and chloride-conducting channelrhodopsins. Precisely timed activation of both archaerhodopsin and halorhodpsin at presynaptic terminals attenuated evoked release. However, sustained archaerhodopsin activation was paradoxically associated with increased spontaneous release. Activation of chloride-conducting channelrhodopsins triggered neurotransmitter release upon light onset. Thus, the biophysical properties of presynaptic terminals dictate unique boundary conditions for optogenetic manipulation.
我们使用嗜盐菌视紫红质、古菌视紫红质和氯离子传导通道视紫红质研究了光遗传学抑制在突触前终末的效果。在突触前终末精确适时地激活古菌视紫红质和嗜盐菌视紫红质均可减弱诱发释放。然而,持续激活古菌视紫红质却反常地与自发释放增加相关。氯离子传导通道视紫红质的激活在光照开始时触发神经递质释放。因此,突触前终末的生物物理特性决定了光遗传学操纵的独特边界条件。