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Nature|September 23, 2000
Topological restriction of SNARE-dependent membrane fusionF Parlati, J A McNew, R Fukuda, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 27, 1999
Rapid and efficient fusion of phospholipid vesicles by the alpha-helical core of a SNARE complex in the absence of an N-terminal regulatory domainF Parlati, T Weber, J A McNew, et al.
The Journal of Cell Biology|December 12, 2001
A t-SNARE of the endocytic pathway must be activated for fusionF Paumet, B Brügger, F Parlati, et al.
Molecular Cell|December 9, 1998
Arrangement of subunits in 20 S particles consisting of NSF, SNAPs, and SNARE complexesT M Hohl, F Parlati, C Wimmer, et al.
Cell|July 25, 1997
Bidirectional transport by distinct populations of COPI-coated vesiclesL Orci, M Stamnes, M Ravazzola, et al.
The Journal of Cell Biology|June 1, 2000
SNAREpins are functionally resistant to disruption by NSF and alphaSNAPT Weber, F Parlati, J A McNew, et al.
FEBS Letters|October 2, 1998
Gos1p, a Saccharomyces cerevisiae SNARE protein involved in Golgi transportJ A McNew, J G Coe, M Søgaard, et al.
The Journal of Cell Biology|May 1, 1996
A v-SNARE implicated in intra-Golgi transportM Nagahama, L Orci, M Ravazzola, et al.
Nature|September 23, 2000
Functional architecture of an intracellular membrane t-SNARER Fukuda, J A McNew, T Weber, et al.
The Journal of Biological Chemistry|June 8, 2001
Molecular mass, stoichiometry, and assembly of 20 S particlesC Wimmer, T M Hohl, C A Hughes, et al.
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