Open structure and gating of the Arabidopsis mechanosensitive ion channel MSL10
Jingying Zhang1,2,3, Grigory Maksaev1,2, Peng Yuan4,5,6,7
1Department of Cell Biology and Physiology, Washington University School of Medicine, Saint Louis, MO, USA.
Abstract:
Plants are challenged by drastically different osmotic environments during growth and development. Adaptation to these environments often involves mechanosensitive ion channels that can detect and respond to mechanical force. In the model plant Arabidopsis thaliana, the mechanosensitive channel MSL10 plays a crucial role in hypo-osmotic shock adaptation and programmed cell death induction, but the molecular basis of channel function remains poorly understood. Here, we report a structural and electrophysiological analysis of MSL10. The cryo-electron microscopy structures reveal a distinct heptameric channel assembly. Structures of the wild-type channel in detergent and lipid environments, and in the absence of membrane tension, capture an open conformation. Furthermore, structural analysis of a non-conductive mutant channel demonstrates that reorientation of phenylalanine side chains alone, without main chain rearrangements, may generate the hydrophobic gate. Together, these results reveal a distinct gating mechanism and advance our understanding of mechanotransduction.
Related Concept Videos
Mechanically-gated Ion Channels
Regulation of Transpiration by Stomata
Ligand-Gated Ion Channel Receptor: Gating Mechanism
Ion Channels
Ion channels are specialized integral membrane proteins on the plasma membrane that allow...
Non-gated Ion Channels
Compared to the gated ion channels, the non-gated channels, also known as leakage or passive channels, have no gating mechanism....
Cell Signaling in Plants


