Vti1a/b regulate synaptic vesicle and dense core vesicle secretion via protein sorting at the Golgi

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作者
Javier Emperador-Melero
Vincent Huson
Jan van Weering
Christian Bollmann
Gabriele Fischer von Mollard
Ruud F. Toonen
Matthijs Verhage
机构
[1] VU University Amsterdam and VU Medical Center,Departments of Functional Genomics, Clinical Genetics, VUmc, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience
[2] VU University Amsterdam and VU Medical Center,Clinical Genetics, VUmc, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience
[3] Bielefeld University,Department of Biochemistry III
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Nature Communications | / 9卷
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摘要
The SNAREs Vti1a/1b are implicated in regulated secretion, but their role relative to canonical exocytic SNAREs remains elusive. Here, we show that synaptic vesicle and dense-core vesicle (DCV) secretion is indeed severely impaired in Vti1a/b-deficient neurons. The synaptic levels of proteins that mediate secretion were reduced, down to 50% for the exocytic SNARE SNAP25. The delivery of SNAP25 and DCV-cargo into axons was decreased and these molecules accumulated in the Golgi. These defects were rescued by either Vti1a or Vti1b expression. Distended Golgi cisternae and clear vacuoles were observed in Vti1a/b-deficient neurons. The normal non-homogeneous distribution of DCV-cargo inside the Golgi was lost. Cargo trafficking out of, but not into the Golgi, was impaired. Finally, retrograde Cholera Toxin trafficking, but not Sortilin/Sorcs1 distribution, was compromised. We conclude that Vti1a/b support regulated secretion by sorting secretory cargo and synaptic secretion machinery components at the Golgi.
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[1]  
Jahn R(2012)Molecular machines governing exocytosis of synaptic vesicles Nature 490 201-207
[2]  
Fasshauer D(2011)Protein scaffolds in the coupling of synaptic exocytosis and endocytosis Nat. Rev. Neurosci. 12 127-138
[3]  
Haucke V(2009)Membrane fusion: grappling with SNARE and SM proteins Sci. (80-.) 323 474-477
[4]  
Neher E(2003)Neurotrophin secretion: current facts and future prospects Prog. Neurobiol. 69 341-374
[5]  
Sigrist SJ(2012)Neuropeptide transmission in brain circuits Neuron 76 98-115
[6]  
Sudhof TC(2006)Dense-core secretory granule biogenesis Physiol 21 124-133
[7]  
Rothman JE(2012)Neuropeptide delivery to synapses by long-range vesicle circulation and sporadic capture Cell 148 1029-1038
[8]  
Lessmann V(2008)Discovery and progress in our understanding of the regulated secretory pathway in neuroendocrine cells Histochem. Cell. Biol. 129 243-252
[9]  
Gottmann K(2001)Homotypic fusion of immature secretory granules during maturation requires syntaxin 6 Mol. Biol. Cell. 12 1699-1709
[10]  
Malcangio M(2014)Two Rab2 interactors regulate dense-core vesicle maturation Neuron 82 167-180