Crosstalk between regulatory elements in the disordered TRPV4 N-terminus modulates lipid-dependent channel activity

Author:

Goretzki BenediktORCID,Wiedemann ChristophORCID,McCray Brett A.ORCID,Schäfer Stefan L.ORCID,Jansen JasminORCID,Tebbe FrederikeORCID,Mitrovic Sarah-Ana,Nöth JuliaORCID,Donohue Jack K.,Jeffries Cy M.ORCID,Steinchen WielandORCID,Stengel FlorianORCID,Sumner Charlotte J.ORCID,Hummer GerhardORCID,Hellmich Ute A.ORCID

Abstract

AbstractIntrinsically disordered regions (IDRs) are essential for membrane receptor regulation but often remain unresolved in structural studies. TRPV4, a member of the TRP vanilloid channel family involved in thermo- and osmosensation, has a large N-terminal IDR of approximately 150 amino acids. With an integrated structural biology approach, we analyze the structural ensemble of the TRPV4 IDR and identify a network of regulatory elements that modulate channel activity in a hierarchical lipid-dependent manner through transient long-range interactions. A highly conserved autoinhibitory patch acts as a master regulator by competing with PIP2binding to attenuate channel activity. Molecular dynamics simulations show that loss of the interaction between the PIP2-binding site and the membrane reduces the force exerted by the IDR on the structured core of TRPV4. This work demonstrates that IDR structural dynamics are coupled to TRPV4 activity and highlights the importance of IDRs for TRP channel function and regulation.

Publisher

Cold Spring Harbor Laboratory

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