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  2. Details for: Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling.
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Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling. [electronic resource]

By:
  • Böhme, Mathias A
Contributor(s):
  • Beis, Christina
  • Reddy-Alla, Suneel
  • Reynolds, Eric
  • Mampell, Malou M
  • Grasskamp, Andreas T
  • Lützkendorf, Janine
  • Bergeron, Dominique Dufour
  • Driller, Jan H
  • Babikir, Husam
  • Göttfert, Fabian
  • Robinson, Iain M
  • O'Kane, Cahir J
  • Hell, Stefan W
  • Wahl, Markus C
  • Stelzl, Ulrich
  • Loll, Bernhard
  • Walter, Alexander M
  • Sigrist, Stephan J
Producer: 20170619Description: 1311-20 p. digitalISSN:
  • 1546-1726
Subject(s):
  • Animals
  • Calcium Channels -- metabolism
  • Carrier Proteins -- genetics
  • Drosophila Proteins -- metabolism
  • Drosophila melanogaster -- genetics
  • Female
  • GTPase-Activating Proteins -- metabolism
  • Intracellular Signaling Peptides and Proteins
  • Male
  • Models, Neurological
  • Mutation
  • Phosphoproteins -- metabolism
  • Presynaptic Terminals -- metabolism
  • Protein Isoforms
  • Synaptic Vesicles -- metabolism
  • rab3 GTP-Binding Proteins -- metabolism
Online resources:
  • Available from publisher's website
In: Nature neuroscience vol. 19
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Publication Type: Journal Article

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Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling.

APA

Böhme M. A., Beis C., Reddy-Alla S., Reynolds E., Mampell M. M., Grasskamp A. T., Lützkendorf J., Bergeron D. D., Driller J. H., Babikir H., Göttfert F., Robinson I. M., O'Kane C. J., Hell S. W., Wahl M. C., Stelzl U., Loll B., Walter A. M. & Sigrist S. J. (20170619). Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling. : Nature neuroscience.

Chicago

Böhme Mathias A, Beis Christina, Reddy-Alla Suneel, Reynolds Eric, Mampell Malou M, Grasskamp Andreas T, Lützkendorf Janine, Bergeron Dominique Dufour, Driller Jan H, Babikir Husam, Göttfert Fabian, Robinson Iain M, O'Kane Cahir J, Hell Stefan W, Wahl Markus C, Stelzl Ulrich, Loll Bernhard, Walter Alexander M and Sigrist Stephan J. 20170619. Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling. : Nature neuroscience.

Harvard

Böhme M. A., Beis C., Reddy-Alla S., Reynolds E., Mampell M. M., Grasskamp A. T., Lützkendorf J., Bergeron D. D., Driller J. H., Babikir H., Göttfert F., Robinson I. M., O'Kane C. J., Hell S. W., Wahl M. C., Stelzl U., Loll B., Walter A. M. and Sigrist S. J. (20170619). Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling. : Nature neuroscience.

MLA

Böhme Mathias A, Beis Christina, Reddy-Alla Suneel, Reynolds Eric, Mampell Malou M, Grasskamp Andreas T, Lützkendorf Janine, Bergeron Dominique Dufour, Driller Jan H, Babikir Husam, Göttfert Fabian, Robinson Iain M, O'Kane Cahir J, Hell Stefan W, Wahl Markus C, Stelzl Ulrich, Loll Bernhard, Walter Alexander M and Sigrist Stephan J. Active zone scaffolds differentially accumulate Unc13 isoforms to tune Ca(2+) channel-vesicle coupling. : Nature neuroscience. 20170619.

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