Crystal structure of a natural light-gated anion channelrhodopsin.

Li, Hai; Huang, Chia-Ying; Govorunova, Elena G; Schafer, Christopher T; Sineshchekov, Oleg A; Wang, Meitian; Zheng, Lei; Spudich, John L · Elife · 2019

basic_science · Level V

Where this comes from

Abstract

The anion channelrhodopsin <i>Gt</i>ACR1 from the alga <i>Guillardia theta</i> is a potent neuron-inhibiting optogenetics tool. Presented here, its X-ray structure at 2.9 Å reveals a tunnel traversing the protein from its extracellular surface to a large cytoplasmic cavity. The tunnel is lined primarily by small polar and aliphatic residues essential for anion conductance. A disulfide-immobilized extracellular cap facilitates channel closing and the ion path is blocked mid-membrane by its photoactive retinylidene chromophore and further by a cytoplasmic side constriction. The structure also reveals a novel photoactive site configuration that maintains the retinylidene Schiff base protonated when the channel is open. These findings suggest a new channelrhodopsin mechanism, in which the Schiff base not only controls gating, but also serves as a direct mediator for anion flux.

Medical subject headings