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BMC Biology
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January 27, 2017
The golgin coiled-coil proteins capture different types of transport carriers via distinct N-terminal motifs
Mie Wong, Alison K Gillingham, Sean Munro
Cell
|
July 7, 2010
A comprehensive comparison of transmembrane domains reveals organelle-specific properties
Hayley J Sharpe, Tim J Stevens, Sean Munro
The Journal of Cell Biology
|
June 16, 2005
The exocyst component Sec5 is present on endocytic vesicles in the oocyte of Drosophila melanogaster
Bernhard Sommer, Adrian Oprins, Catherine Rabouille, et al.
Current Biology : CB
|
March 7, 2003
The ARF-like GTPases Arl1p and Arl3p act in a pathway that interacts with vesicle-tethering factors at the Golgi apparatus
Bojana Panic, James R C Whyte, Sean Munro
Biology Open
|
August 18, 2018
The small G protein Arl8 contributes to lysosomal function and long-range axonal transport in <i>Drosophila</i>
Cláudia Rosa-Ferreira, Sean T Sweeney, Sean Munro
The Journal of Cell Biology
|
December 24, 2017
The two TRAPP complexes of metazoans have distinct roles and act on different Rab GTPases
Falko Riedel, Antonio Galindo, Nadine Muschalik, et al.
Journal of Cell Science
|
March 11, 2014
The Arf family G protein Arl1 is required for secretory granule biogenesis in Drosophila
Isabel L Torres, Cláudia Rosa-Ferreira, Sean Munro
Molecular Biology of the Cell
|
November 14, 2002
CASP, the alternatively spliced product of the gene encoding the CCAAT-displacement protein transcription factor, is a Golgi membrane protein related to giantin
Alison K Gillingham, Andrea C Pfeifer, Sean Munro
Current Biology : CB
|
September 14, 2022
In vivo characterization of Drosophila golgins reveals redundancy and plasticity of vesicle capture at the Golgi apparatus
Sung Yun Park, Nadine Muschalik, Jessica Chadwick, et al.
Current Biology : CB
|
April 3, 2007
The Arl4 family of small G proteins can recruit the cytohesin Arf6 exchange factors to the plasma membrane
Irmgard Hofmann, Amanda Thompson, Christopher M Sanderson, et al.
Page
of 9
Search research articles
Search
Showing results (31-40 of 81) with videos related to
Sort By:
Page
of 9
BMC Biology
|
January 27, 2017
The golgin coiled-coil proteins capture different types of transport carriers via distinct N-terminal motifs
Mie Wong, Alison K Gillingham, Sean Munro
Cell
|
July 7, 2010
A comprehensive comparison of transmembrane domains reveals organelle-specific properties
Hayley J Sharpe, Tim J Stevens, Sean Munro
The Journal of Cell Biology
|
June 16, 2005
The exocyst component Sec5 is present on endocytic vesicles in the oocyte of Drosophila melanogaster
Bernhard Sommer, Adrian Oprins, Catherine Rabouille, et al.
Current Biology : CB
|
March 7, 2003
The ARF-like GTPases Arl1p and Arl3p act in a pathway that interacts with vesicle-tethering factors at the Golgi apparatus
Bojana Panic, James R C Whyte, Sean Munro
Biology Open
|
August 18, 2018
The small G protein Arl8 contributes to lysosomal function and long-range axonal transport in <i>Drosophila</i>
Cláudia Rosa-Ferreira, Sean T Sweeney, Sean Munro
The Journal of Cell Biology
|
December 24, 2017
The two TRAPP complexes of metazoans have distinct roles and act on different Rab GTPases
Falko Riedel, Antonio Galindo, Nadine Muschalik, et al.
Journal of Cell Science
|
March 11, 2014
The Arf family G protein Arl1 is required for secretory granule biogenesis in Drosophila
Isabel L Torres, Cláudia Rosa-Ferreira, Sean Munro
Molecular Biology of the Cell
|
November 14, 2002
CASP, the alternatively spliced product of the gene encoding the CCAAT-displacement protein transcription factor, is a Golgi membrane protein related to giantin
Alison K Gillingham, Andrea C Pfeifer, Sean Munro
Current Biology : CB
|
September 14, 2022
In vivo characterization of Drosophila golgins reveals redundancy and plasticity of vesicle capture at the Golgi apparatus
Sung Yun Park, Nadine Muschalik, Jessica Chadwick, et al.
Current Biology : CB
|
April 3, 2007
The Arl4 family of small G proteins can recruit the cytohesin Arf6 exchange factors to the plasma membrane
Irmgard Hofmann, Amanda Thompson, Christopher M Sanderson, et al.
Page
of 9