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The SNARE protein vti1a functions in dense‐core vesicle biogenesis
Authors:Heidi de Wit  Susanne Schöning  Trine L Toft‐Bertelsen  Juliane Lauks  Iwona Ziomkiewicz  Annita N Weiss  Alexander Schulz  Gabriele Fischer von Mollard  Matthijs Verhage  Jakob B Sørensen
Institution:1. Department of Functional Genomics and Clinical Genetics, Center for Neurogenomics and Cognitive Research, VU University Amsterdam and VU Medical Center, , Amsterdam, The Netherlands;2. Biochemie III, Fakult?t für Chemie, Universit?t Bielefeld, , Bielefeld, Germany;3. Neurosecretion Group, Department of Neuroscience and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, , Copenhagen, Denmark;4. Department of Plant and Environmental Sciences, University of Copenhagen, , Frederiksberg, Denmark;5. Department of Pharmacology, University of Michigan, , Ann Arbor, MI, USA;6. Lundbeck Foundation Center for Biomembranes in Nanomedicine, University of Copenhagen, , Copenhagen, Denmark
Abstract:The SNARE protein vti1a is proposed to drive fusion of intracellular organelles, but recent data also implicated vti1a in exocytosis. Here we show that vti1a is absent from mature secretory vesicles in adrenal chromaffin cells, but localizes to a compartment near the trans‐Golgi network, partially overlapping with syntaxin‐6. Exocytosis is impaired in vti1a null cells, partly due to fewer Ca2+‐channels at the plasma membrane, partly due to fewer vesicles of reduced size and synaptobrevin‐2 content. In contrast, release kinetics and Ca2+‐sensitivity remain unchanged, indicating that the final fusion reaction leading to transmitter release is unperturbed. Additional deletion of the closest related SNARE, vti1b, does not exacerbate the vti1a phenotype, and vti1b null cells show no secretion defects, indicating that vti1b does not participate in exocytosis. Long‐term re‐expression of vti1a (days) was necessary for restoration of secretory capacity, whereas strong short‐term expression (hours) was ineffective, consistent with vti1a involvement in an upstream step related to vesicle generation, rather than in fusion. We conclude that vti1a functions in vesicle generation and Ca2+‐channel trafficking, but is dispensable for transmitter release.
Keywords:adrenal chromaffin cells  Ca2+‐channels  exocytosis     SNARE     vesicle biogenesis
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