The Crystal Structure of Bromide-BoundGtACR1 Reveals a Pre-Activated State in the Transmembrane Anion Tunnel

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Abstract

The crystal structure of the light-gated anion channelGtACR1 reported in our previous research article (Li et al., 2019) revealed a continuous tunnel traversing the protein from extracellular to intracellular pores. We proposed the tunnel as the conductance channel closed by three constrictions: C1 in the extracellular half, mid-membrane C2 containing the photoactive site, and C3 on the cytoplasmic side. Reported here, the crystal structure of bromide-boundGtACR1 reveals structural changes that relax the C1 and C3 constrictions, including a novel salt-bridge switch mechanism involving C1 and the photoactive site. These findings indicate that substrate binding induces a transition from an inactivated state to a pre-activated state in the dark that facilitates channel opening by reducing free energy in the tunnel constrictions. The results provide direct evidence that the tunnel is the closed form of the channel ofGtACR1 and shed light on the light-gated channel activation mechanism.

Impact Statement

Substrate-induced structural changes inGtACR1 provide new insight into the chemical mechanism of natural light-gated anion conductance, and facilitate its optimization for photoinhibition of neuron firing in optogenetics.

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