Calcium-permeable channelrhodopsins for the photocontrol of calcium signalling.

Fernandez Lahore, Rodrigo G; Pampaloni, Niccolò P; Schiewer, Enrico; Heim, M-Marcel; Tillert, Linda; Vierock, Johannes; Oppermann, Johannes; Walther, Jakob et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Channelrhodopsins are light-gated ion channels used to control excitability of designated cells in large networks with high spatiotemporal resolution. While ChRs selective for H<sup>+</sup>, Na<sup>+</sup>, K<sup>+</sup> and anions have been discovered or engineered, Ca<sup>2+</sup>-selective ChRs have not been reported to date. Here, we analyse ChRs and mutant derivatives with regard to their Ca<sup>2+</sup> permeability and improve their Ca<sup>2+</sup> affinity by targeted mutagenesis at the central selectivity filter. The engineered channels, termed CapChR1 and CapChR2 for calcium-permeable channelrhodopsins, exhibit reduced sodium and proton conductance in connection with strongly improved Ca<sup>2+</sup> permeation at negative voltage and low extracellular Ca<sup>2+</sup> concentrations. In cultured cells and neurons, CapChR2 reliably increases intracellular Ca<sup>2+</sup> concentrations. Moreover, CapChR2 can robustly trigger Ca<sup>2+</sup> signalling in hippocampal neurons. When expressed together with genetically encoded Ca<sup>2+</sup> indicators in Drosophila melanogaster mushroom body output neurons, CapChRs mediate light-evoked Ca<sup>2+</sup> entry in brain explants.

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