Synapsin 1 is one of a family of phosphoproteins located on small synaptic vesicles (SSV) in the presynaptic terminal, and probably plays a critical role in the process of neuronal exocytosis by providing regulated linkages between SSV and the cytoskeleton. Two forms of synapsin 1 are produced from a single gene by differential mRNA splicing: 1a, 706 amino acid residues, and 1b, 670 residues. Synapsin 1 has two structural domains, a globular N-terminal head domain and an elongated tail domain. Electron microscopy of nerve terminals in situ and reconstitution studies in vitro indicates that synapsin 1 can interact with microtubules, microfilaments and brain spectrin. In vitro, synapsin 1 can bundle microtubules. This could either occur by synapsin 1 being at least bivalent for microtubules, or by univalent synapsin 1 molecules aggregating to form complexes that are more than univalent. To resolve this question, we have taken the approach of preparing defined fragments of synapsin 1 from each structural domain and analysing them for tubulin-binding activity. Our results show that there are tubulin-binding sites in both head and tail domains. We conclude that synapsin 1 monomers should be able to cross-link microtubules.
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June 1991
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Research Article|
June 15 1991
Site specificity in the interactions of synapsin 1 with tubulin Available to Purchase
A F Bennett;
A F Bennett
1Biological Laboratory, University of Kent, Canterbury, U.K.
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N V L Hayes;
N V L Hayes
1Biological Laboratory, University of Kent, Canterbury, U.K.
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A J Baines
A J Baines
1Biological Laboratory, University of Kent, Canterbury, U.K.
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Publisher: Portland Press Ltd
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© 1991 The Biochemical Society, London
1991
Biochem J (1991) 276 (3): 793–799.
Citation
A F Bennett, N V L Hayes, A J Baines; Site specificity in the interactions of synapsin 1 with tubulin. Biochem J 15 June 1991; 276 (3): 793–799. doi: https://doi.org/10.1042/bj2760793
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