Publication | Open Access
Conformational motions and ligand-binding underlying gating and regulation in IP3R channel
48
Citations
73
References
2022
Year
Inositol-1,4,5-trisphosphate receptors (IP<sub>3</sub>Rs) are activated by IP<sub>3</sub> and Ca<sup>2+</sup> and their gating is regulated by various intracellular messengers that finely tune the channel activity. Here, using single particle cryo-EM analysis we determined 3D structures of the nanodisc-reconstituted IP<sub>3</sub>R1 channel in two ligand-bound states. These structures provide unprecedented details governing binding of IP<sub>3</sub>, Ca<sup>2+</sup> and ATP, revealing conformational changes that couple ligand-binding to channel opening. Using a deep-learning approach and 3D variability analysis we extracted molecular motions of the key protein domains from cryo-EM density data. We find that IP<sub>3</sub> binding relies upon intrinsic flexibility of the ARM2 domain in the tetrameric channel. Our results highlight a key role of dynamic side chains in regulating gating behavior of IP<sub>3</sub>R channels. This work represents a stepping-stone to developing mechanistic understanding of conformational pathways underlying ligand-binding, activation and regulation of the channel.
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