Three-dimensional structure of the neuronal-Sec1-syntaxin 1a complex
- PMID: 10746715
- DOI: 10.1038/35006120
Three-dimensional structure of the neuronal-Sec1-syntaxin 1a complex
Abstract
Syntaxin 1a and neuronal Sec1 (nSec1) form an evolutionarily conserved heterodimer that is essential for vesicle trafficking and membrane fusion. The crystal structure of the nSec1-syntaxin 1a complex, determined at 2.6 A resolution, reveals that major conformational rearrangements occur in syntaxin relative to both the core SNARE complex and isolated syntaxin. We identify regions of the two proteins that seem to determine the binding specificity of particular Sec1 proteins for syntaxin isoforms, which is likely to be important for the fidelity of membrane trafficking. The structure also indicates mechanisms that might couple the action of upstream effector proteins to conformational changes in syntaxin 1a and nSec1 that lead to core complex formation and membrane fusion.
Comment in
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Membrane fusion. Changing partners.Nature. 2000 Mar 23;404(6776):347-9. doi: 10.1038/35006200. Nature. 2000. PMID: 10746709 No abstract available.
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