作者
Andre Berndt, Soo Yeun Lee, Jonas Wietek, Charu Ramakrishnan, Elizabeth E Steinberg, Asim J Rashid, Hoseok Kim, Sungmo Park, Adam Santoro, Paul W Frankland, Shrivats M Iyer, Sally Pak, Sofie Ährlund-Richter, Scott L Delp, Robert C Malenka, Sheena A Josselyn, Marie Carlén, Peter Hegemann, Karl Deisseroth
发表日期
2016/1/26
期刊
Proceedings of the National Academy of Sciences
卷号
113
期号
4
页码范围
822-829
出版商
National Academy of Sciences
简介
The structure-guided design of chloride-conducting channelrhodopsins has illuminated mechanisms underlying ion selectivity of this remarkable family of light-activated ion channels. The first generation of chloride-conducting channelrhodopsins, guided in part by development of a structure-informed electrostatic model for pore selectivity, included both the introduction of amino acids with positively charged side chains into the ion conduction pathway and the removal of residues hypothesized to support negatively charged binding sites for cations. Engineered channels indeed became chloride selective, reversing near −65 mV and enabling a new kind of optogenetic inhibition; however, these first-generation chloride-conducting channels displayed small photocurrents and were not tested for optogenetic inhibition of behavior. Here we report the validation and further development of the channelrhodopsin pore …
引用总数
201620172018201920202021202220232024163242402911343512
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