EMD-24188

Single-particle
2.7 Å
EMD-24188 Deposition: 05/06/2021
Map released: 16/02/2022
Last modified: 29/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-24188

Structure of Mechanosensitive Ion Channel Flycatcher1 Protomer in 'Down' conformation in GDN

EMD-24188

Single-particle
2.7 Å
EMD-24188 Deposition: 05/06/2021
Map released: 16/02/2022
Last modified: 29/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Dionaea muscipula
Sample: FLYC1
Fitted models: 7n5f (Avg. Q-score: 0.44)
Raw data: EMPIAR-10740

Deposition Authors: Jojoa-Cruz S , Saotome K , Lee WH , Patapoutian A , Ward AB
Structural insights into the Venus flytrap mechanosensitive ion channel Flycatcher1.
Jojoa-Cruz S , Saotome K , Tsui CCA , Lee WH , Sansom MSP , Murthy SE , Patapoutian A , Ward AB
(2022) Nat Commun , 13 , 850 - 850
PUBMED: 35165281
DOI: doi:10.1038/s41467-022-28511-5
ISSN: 2041-1723
Abstract:
Flycatcher1 (FLYC1), a MscS homolog, has recently been identified as a candidate mechanosensitive (MS) ion channel involved in Venus flytrap prey recognition. FLYC1 is a larger protein and its sequence diverges from previously studied MscS homologs, suggesting it has unique structural features that contribute to its function. Here, we characterize FLYC1 by cryo-electron microscopy, molecular dynamics simulations, and electrophysiology. Akin to bacterial MscS and plant MSL1 channels, we find that FLYC1 central core includes side portals in the cytoplasmic cage that regulate ion preference and conduction, by identifying critical residues that modulate channel conductance. Topologically unique cytoplasmic flanking regions can adopt 'up' or 'down' conformations, making the channel asymmetric. Disruption of an up conformation-specific interaction severely delays channel deactivation by 40-fold likely due to stabilization of the channel open state. Our results illustrate novel structural features and likely conformational transitions that regulate mechano-gating of FLYC1.