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Structural insights into TRPV2 activation by small molecules.

Ruth A PumroyAnna D ProtopopovaTabea C FrickeIris U LangeFerdinand M HaugPhuong T NguyenPamela N GalloBárbara B SousaGonçalo J L BernardesVladimir Yarov-YarovoyAndreas LefflerVera Y Moiseenkova-Bell
Published in: Nature communications (2022)
Transient receptor potential vanilloid 2 (TRPV2) is involved in many critical physiological and pathophysiological processes, making it a promising drug target. Here we present cryo-electron microscopy (cryo-EM) structures of rat TRPV2 in lipid nanodiscs activated by 2-aminoethoxydiphenyl borate (2-APB) and propose a TRPV2-specific 2-ABP binding site at the interface of S5 of one monomer and the S4-S5 linker of the adjacent monomer. In silico docking and electrophysiological studies confirm the key role of His521 and Arg539 in 2-APB activation of TRPV2. Additionally, electrophysiological experiments show that the combination of 2-APB and cannabidiol has a synergetic effect on TRPV2 activation, and cryo-EM structures demonstrate that both drugs were able to bind simultaneously. Together, our cryo-EM structures represent multiple functional states of the channel, providing a native picture of TRPV2 activation by small molecules and a structural framework for the development of TRPV2-specific activators.
Keyphrases
  • neuropathic pain
  • high resolution
  • electron microscopy
  • emergency department
  • spinal cord injury
  • small molecule
  • molecular docking
  • fatty acid
  • brain injury
  • drug induced
  • cerebral ischemia