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9OKC

22bin20S complex (NSF-alphaSNAP-2:2 syntaxin-1a:SNAP-25), hydrolyzing, class 17

Summary for 9OKC
Entry DOI10.2210/pdb9okc/pdb
Related9OJ2 9OJJ 9OJR 9OJU 9OJZ 9OK3 9OK5
EMDB information70559
DescriptorVesicle-fusing ATPase, Undefined N-terminus of SNAP-25 or syntaxin-1a, ADENOSINE-5'-DIPHOSPHATE, ... (6 entities in total)
Functional Keywordsatpase, snare, hydrolysis, disassembly, translocation, exocytosis, neurotransmitter release, synapse, synaptic transmission, membrane fusion, hydrolase
Biological sourceCricetulus griseus (Chinese hamster)
More
Total number of polymer chains7
Total formula weight504583.63
Authors
White, K.I.,Brunger, A.T. (deposition date: 2025-05-09, release date: 2025-08-06)
Primary citationWhite, K.I.,Khan, Y.A.,Qiu, K.,Balaji, A.,Couoh-Cardel, S.,Esquivies, L.,Pfuetzner, R.A.,Diao, J.,Brunger, A.T.
Pre-fusion AAA+ remodeling of target-SNARE protein complexes enables synaptic transmission.
Biorxiv, 2024
Cited by
PubMed Abstract: Membrane fusion is driven by SNARE complex formation across cellular contexts, including vesicle fusion during synaptic transmission. Multiple proteins organize trans-SNARE complex assembly and priming, leading to fusion. One target membrane SNARE, syntaxin, forms nanodomains at the active zone, and another, SNAP-25, enters non-fusogenic complexes with it. Here, we show that the AAA+ protein NSF (N-ethylmaleimide sensitive factor) and SNAP (soluble NSF attachment protein) must act prior to fusion. We show that syntaxin clusters are conserved, that NSF colocalizes with them, and characterize SNARE populations within and near these clusters using cryo-EM. Supercomplexes of NSF, α-SNAP, and either a syntaxin tetramer or two binary complexes of syntaxin-SNAP-25 reveal atomic details of SNARE processing and show how sequential ATP hydrolysis drives disassembly. These results suggest a functional role for syntaxin clusters as reservoirs and a corresponding role for NSF in syntaxin liberation and SNARE protein quality control preceding fusion.
PubMed: 39416070
DOI: 10.1101/2024.10.11.617886
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.67 Å)
Structure validation

239803

건을2025-08-06부터공개중

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