Zeitschriftenartikel (399)
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9 (5), S. 1 - 8 (2013)
Qualitative and quantitative characterization of protein-phosphoinositide interactions with liposome-based methods. Autophagy 102.
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8 (5), S. 998 - 1009 (2013)
Small-scale isolation of synaptic vesicles from mammalian brain. Nature Protocols 103.
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78 (2), S. 285 - 297 (2013)
Molecular profiling of synaptic vesicle docking sites reveals novel proteins but few differences between glutamatergic and GABAergic synapses. Neuron 104.
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77 (6), S. 1097 - 1108 (2013)
Synaptic PI(3,4,5)P-3 is required for Syntaxin1A clustering and neurotransmitter release. Neuron 105.
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33 (8), S. 3413 - 3423 (2013)
Storage and uptake of D-serine into astrocytic synaptic-like vesicles specify gliotransmission. Journal of Neuroscience 106.
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2 (1), 21564 (2013)
Managing intracellular transport. Worm 107.
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20, S. 679 - 686 (2013)
Phosphatidylinositol 4,5-bisphosphate clusters act as molecular beacons for vesicle recruitment. Nature Structural and Molecular Biology 108.
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9 (1), S. 106 - 107 (2013)
It takes two to tango: PROPPINs use two phosphoinositide-binding sites. Autophagy 109.
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490 (7419), S. 201 - 207 (2012)
Molecular machines governing exocytosis of synaptic vesicles. Nature 110.
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109 (30), S. E2042 - E2049 (2012)
Structural and functional characterization of the two phosphoinositide binding sites of PROPPINs. Proceedings of the National Academy of Sciences of the United States of America 111.
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109 (27), S. 11037 - 11042 (2012)
Cis- and trans-membrane interactions of synaptotagmin-1. Proceedings of the National Academy of Siences of the United States of America 112.
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336 (6088), S. 1581 - 1584 (2012)
Membrane fusion intermediates via directional and full assembly of the SNARE complex. Science 113.
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287 (20), S. 16447 - 16453 (2012)
Phosphatidylinositol 4,5-bisphosphate increases the Ca2+ affinity of synaptotagmin-1 40-fold. Journal of Biological Chemistry 114.
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109 (15), S. 5862 - 5867 (2012)
Phosphorylation-regulated axonal dependent transport of syntaxin 1 is mediated by a Kinesin-1 adapter. Proceedings of the National Academy of Sciences of the United States of America 115.
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102 (6), S. 1394 - 1402 (2012)
Measuring Ca2+-induced structural changes in lipid monolayers: implications for synaptic vesicle exocytosis. Biophysical Journal 116.
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19 (10), S. 991 - 997 (2012)
Controlling synaptotagmin activity by electrostatic screening. Nature Structural and Molecular Biology 117.
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50 (37), S. 8597 - 8601 (2011)
Transmembrane domain peptide/peptide nucleic acid hybrid as a model of a SNARE protein in vesicle fusion. Angewandte Chemie-International Edition 118.
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108 (34), S. 14318 - 14323 (2011)
Two synaptobrevin molecules are sufficient for vesicle fusion in central nervous system synapses. Proceedings of the National Academy of Sciences of the United States of America 119.
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3 (4), S. 204 - 205 (2011)
Counting the SNAREs needed for membrane fusion. Journal of Molecular Cell Biology 120.
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286 (28), S. 25039 - 25046 (2011)
The Dsl1 protein tethering complex is a resident endoplasmic reticulum complex, which interacts with five soluble NSF (N-ethylmaleimide-sensitive factor) attachment protein receptors (SNAREs) implications for fusion and fusion regulation. Journal of Biological Chemistry 121.
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108 (29), S. 11729 - 11730 (2011)
Inside insight to membrane fusion. Proceedings of the National Academy of Sciences of the United States of America 122.
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34 (6), 63 (2011)
Synaptic vesicles studied by dynamic light scattering. The European Physical Journal E 123.
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18 (7), S. 805 - 812 (2011)
Synaptotagmin-1 may be a distance regulator acting upstream of SNARE nucleation. Nature Structural and Molecular Biology 124.
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1813 (5), S. 1038 - 1044 (2011)
VAMP3 is associated with endothelial Weibel-Palade bodies and participates in their Ca2+-dependent exocytosis. Biochimica et Biophysica Acta-Molecular Cell Research 125.
Zeitschriftenartikel
6 (4), e18754 (2011)
Amyloid precursor protein is trafficked and secreted via synaptic vesicles. PLoS One 126.
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30 (7), S. 1209 - 1220 (2011)
Ca2+ induces clustering of membrane proteins in the plasma membrane via electrostatic interactions. EMBO Journal 127.
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14 (4), S. 405 - 407 (2011)
CLC-3 spices up GABAergic synaptic vesicles. Nature Neuroscience 128.
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193 (8), S. 2042 - 2045 (2011)
Crystal structure of the autochaperone region from the Shigella flexneri autotransporter IcsA. Journal of Bacteriology 129.
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31 (7), S. 1551 - 1564 (2011)
Tctex-1, a novel interaction partner of Rab3D, is required for osteoclastic bone resorption. Molecular and Cellular Biology 130.
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47 (33), S. 9405 - 9407 (2011)
SNARE derived peptide mimic inducing membrane fusion. Chemical Communications 131.
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2 (2), S. 77 - 81 (2011)
Distinct yet overlapping roles of Rab GTPases on synaptic vesicles. Small GTPases 132.
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479 (7374), doi:10.1038/nature10545, S. 552 - 555 (2011)
Membrane protein sequestering by ionic protein–lipid interactions. Nature 133.
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68 (1), S. 6 - 8 (2010)
VGLUTs—potential targets for the treatment of seizures? Neuron 134.
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30 (40), S. 13441 - 13453 (2010)
Quantitative analysis of synaptic vesicle Rabs uncovers distinct yet overlapping roles for Rab3a and Rab27b in Ca2+-triggered exocytosis. Journal of Neuroscience 135.
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402 (2), S. 161 - 169 (2010)
A sandwich enzyme-linked immunosorbent assay for the quantification of insoluble membrane and scaffold proteins. Analytical Biochemistry 136.
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73 (6), S. 606 - 617 (2010)
Synaptic membrane proteins form stable microdomains in early endosomes. Microscopy Research and Technique 137.
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5 (6), S. 1127 - 1137 (2010)
A fluorescence-based in vitro assay for investigating early endosome dynamics. Nature Protocols 138.
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20 (5), S. 257 - 268 (2010)
Dsl1p/Zw10: common mechanisms behind tethering vesicles and microtubules. Trends in Cell Biology 139.
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285 (18), S. 13535 - 13541 (2010)
t-SNARE protein conformations patterned by the lipid microenvironment. The Journal of Biological Chemistry 140.
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3 (119), ra33, S. 1 - 12 (2010)
Evolution of CASK into a Mg2+-sensitive kinase. Science Signaling 141.
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189 (2), S. 223 - 232 (2010)
Regulation of exosome secretion by Rab35 and its GTPase-activating proteins TBC1D10A–C. Journal of Cell Biology 142.
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98 (7), S. 1200 - 1208 (2010)
Structure parameters of synaptic vesicles quantified by small-angle x-ray scattering. Biophysical Journal 143.
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123 (6), S. 819 - 823 (2010)
The architecture of an excitatory synapse. Journal of Cell Sience 144.
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11 (3), S. 394 - 404 (2010)
Structure and dynamics of a two-helix SNARE complex in live cells. Traffic 145.
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17 (3), S. 358 - 364 (2010)
One SNARE complex is sufficient for membrane fusion. Nature Structural and Molecular Biology 146.
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30 (1), S. 2 - 12 (2010)
Quantitative comparison of glutamatergic and GABAergic synaptic vesicles unveils selectivity for few proteins including MAL2, a novel synaptic vesicle protein. Journal of Neuroscience 147.
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12, 105004 (2010)
In vitro study of interaction of synaptic vesicles with lipid membranes. New Journal of Physics 148.
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139 (6), S. 1053 - 1055 (2009)
A tethering complex recruits SNAREs and grabs vesicles. Cell 149.
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106 (48), S. 20306 - 20311 (2009)
Dynamic structure of lipid-bound synaptobrevin suggests a nucleation-propagation mechanism for trans-SNARE complex formation. Proceedings of the National Academy of Sciences of the United States of America 150.
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64 (3), S. 295 - 297 (2009)
Complexins living up to their name — New light on their role in exocytosis. Neuron