[PDF][PDF] Structure of dimeric and tetrameric complexes of the BAR domain protein PICK1 determined by small-angle X-ray scattering

ML Karlsen, TS Thorsen, N Johner… - Structure, 2015 - cell.com
ML Karlsen, TS Thorsen, N Johner, I Ammendrup-Johnsen, S Erlendsson, X Tian
Structure, 2015cell.com
PICK1 is a neuronal scaffolding protein containing a PDZ domain and an auto-inhibited BAR
domain. BAR domains are membrane-sculpting protein modules generating membrane
curvature and promoting membrane fission. Previous data suggest that BAR domains are
organized in lattice-like arrangements when stabilizing membranes but little is known about
structural organization of BAR domains in solution. Through a small-angle X-ray scattering
(SAXS) analysis, we determine the structure of dimeric and tetrameric complexes of PICK1 …
Summary
PICK1 is a neuronal scaffolding protein containing a PDZ domain and an auto-inhibited BAR domain. BAR domains are membrane-sculpting protein modules generating membrane curvature and promoting membrane fission. Previous data suggest that BAR domains are organized in lattice-like arrangements when stabilizing membranes but little is known about structural organization of BAR domains in solution. Through a small-angle X-ray scattering (SAXS) analysis, we determine the structure of dimeric and tetrameric complexes of PICK1 in solution. SAXS and biochemical data reveal a strong propensity of PICK1 to form higher-order structures, and SAXS analysis suggests an offset, parallel mode of BAR-BAR oligomerization. Furthermore, unlike accessory domains in other BAR domain proteins, the positioning of the PDZ domains is flexible, enabling PICK1 to perform long-range, dynamic scaffolding of membrane-associated proteins. Together with functional data, these structural findings are compatible with a model in which oligomerization governs auto-inhibition of BAR domain function.
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