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PIP2 modulates TRPC3 activity via TRP helix and S4-S5 linker.
Clarke, Amy; Skerjanz, Julia; Gsell, Mathias A F; Wiedner, Patrick; Erkan-Candag, Hazel; Groschner, Klaus; Stockner, Thomas; Tiapko, Oleksandra.
Affiliation
  • Clarke A; Department of Pharmacology, Medical University of Vienna, Vienna, Austria.
  • Skerjanz J; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria.
  • Gsell MAF; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria.
  • Wiedner P; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria.
  • Erkan-Candag H; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria.
  • Groschner K; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria.
  • Stockner T; Department of Pharmacology, Medical University of Vienna, Vienna, Austria. thomas.stockner@meduniwien.ac.at.
  • Tiapko O; Division of Medical Physics and Biophysics, Medical University of Graz, Graz, Austria. oleksandra.tiapko@medunigraz.at.
Nat Commun ; 15(1): 5220, 2024 Jun 18.
Article in En | MEDLINE | ID: mdl-38890374
ABSTRACT
The transient receptor potential canonical type 3 (TRPC3) channel plays a pivotal role in regulating neuronal excitability in the brain via its constitutive activity. The channel is intricately regulated by lipids and has previously been demonstrated to be positively modulated by PIP2. Using molecular dynamics simulations and patch clamp techniques, we reveal that PIP2 predominantly interacts with TRPC3 at the L3 lipid binding site, located at the intersection of pre-S1 and S1 helices. We demonstrate that PIP2 sensing involves a multistep mechanism that propagates from L3 to the pore domain via a salt bridge between the TRP helix and S4-S5 linker. Notably, we find that both stimulated and constitutive TRPC3 activity require PIP2. These structural insights into the function of TRPC3 are invaluable for understanding the role of the TRPC subfamily in health and disease, in particular for cardiovascular diseases, in which TRPC3 channels play a major role.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphatidylinositol 4,5-Diphosphate / TRPC Cation Channels / Molecular Dynamics Simulation Limits: Animals / Humans Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2024 Document type: Article Affiliation country: Austria

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phosphatidylinositol 4,5-Diphosphate / TRPC Cation Channels / Molecular Dynamics Simulation Limits: Animals / Humans Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2024 Document type: Article Affiliation country: Austria
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