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Journal of Cell Science
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December 11, 2008
Imaging of evoked dense-core-vesicle exocytosis in hippocampal neurons reveals long latencies and kiss-and-run fusion events
Xiaofeng Xia, Volkmar Lessmann, Thomas F J Martin
Molecular Biology of the Cell
|
November 30, 2005
SNAP25, but not syntaxin 1A, recycles via an ARF6-regulated pathway in neuroendocrine cells
Yoshikatsu Aikawa, Xiaofeng Xia, Thomas F J Martin
Cancers
|
June 13, 2025
Regulatory Mechanisms and Therapeutic Targeting of PD-L1 Trafficking and Stability in Cancer Immunotherapy
Muralidharan Mani, Jeong Woo Park, Thomas F J Martin
Research Square
|
September 15, 2025
Molecular requirements for mammalian crinophagy highlight a key role for Ca<sup>2+</sup>-dependent Munc13-4
Muralidharan Mani, Declan J James, Thomas F J Martin
The Journal of Biological Chemistry
|
October 4, 2015
Phospholipase Cη2 Activation Redirects Vesicle Trafficking by Regulating F-actin
Masaki Yamaga, D Michelle Kielar-Grevstad, Thomas F J Martin
Molecular Biology of the Cell
|
January 20, 2017
Munc13-4 functions as a Ca<sup>2+</sup> sensor for homotypic secretory granule fusion to generate endosomal exocytic vacuoles
Sang Su Woo, Declan J James, Thomas F J Martin
The Journal of Biological Chemistry
|
April 21, 2019
The priming factor CAPS1 regulates dense-core vesicle acidification by interacting with rabconnectin3β/WDR7 in neuroendocrine cells
Ellen Crummy, Muralidharan Mani, John C Thellman, et al.
Cell Metabolism
|
August 2, 2011
Munc13 homology domain-1 in CAPS/UNC31 mediates SNARE binding required for priming vesicle exocytosis
Chuenchanok Khodthong, Greg Kabachinski, Declan J James, et al.
Molecular Biology of the Cell
|
February 17, 2006
A second SNARE role for exocytic SNAP25 in endosome fusion
Yoshikatsu Aikawa, Kara L Lynch, Kristin L Boswell, et al.
The Journal of Cell Biology
|
June 23, 2018
A Ca<sup>2+</sup>-stimulated exosome release pathway in cancer cells is regulated by Munc13-4
Scott W Messenger, Sang Su Woo, Zhongze Sun, et al.
Page
of 5
Search research articles
Search
Showing results (11-20 of 45) with videos related to
Sort By:
Page
of 5
Journal of Cell Science
|
December 11, 2008
Imaging of evoked dense-core-vesicle exocytosis in hippocampal neurons reveals long latencies and kiss-and-run fusion events
Xiaofeng Xia, Volkmar Lessmann, Thomas F J Martin
Molecular Biology of the Cell
|
November 30, 2005
SNAP25, but not syntaxin 1A, recycles via an ARF6-regulated pathway in neuroendocrine cells
Yoshikatsu Aikawa, Xiaofeng Xia, Thomas F J Martin
Cancers
|
June 13, 2025
Regulatory Mechanisms and Therapeutic Targeting of PD-L1 Trafficking and Stability in Cancer Immunotherapy
Muralidharan Mani, Jeong Woo Park, Thomas F J Martin
Research Square
|
September 15, 2025
Molecular requirements for mammalian crinophagy highlight a key role for Ca<sup>2+</sup>-dependent Munc13-4
Muralidharan Mani, Declan J James, Thomas F J Martin
The Journal of Biological Chemistry
|
October 4, 2015
Phospholipase Cη2 Activation Redirects Vesicle Trafficking by Regulating F-actin
Masaki Yamaga, D Michelle Kielar-Grevstad, Thomas F J Martin
Molecular Biology of the Cell
|
January 20, 2017
Munc13-4 functions as a Ca<sup>2+</sup> sensor for homotypic secretory granule fusion to generate endosomal exocytic vacuoles
Sang Su Woo, Declan J James, Thomas F J Martin
The Journal of Biological Chemistry
|
April 21, 2019
The priming factor CAPS1 regulates dense-core vesicle acidification by interacting with rabconnectin3β/WDR7 in neuroendocrine cells
Ellen Crummy, Muralidharan Mani, John C Thellman, et al.
Cell Metabolism
|
August 2, 2011
Munc13 homology domain-1 in CAPS/UNC31 mediates SNARE binding required for priming vesicle exocytosis
Chuenchanok Khodthong, Greg Kabachinski, Declan J James, et al.
Molecular Biology of the Cell
|
February 17, 2006
A second SNARE role for exocytic SNAP25 in endosome fusion
Yoshikatsu Aikawa, Kara L Lynch, Kristin L Boswell, et al.
The Journal of Cell Biology
|
June 23, 2018
A Ca<sup>2+</sup>-stimulated exosome release pathway in cancer cells is regulated by Munc13-4
Scott W Messenger, Sang Su Woo, Zhongze Sun, et al.
Page
of 5