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Journal of Cell Science
|
July 27, 2007
The exon-junction-complex-component metastatic lymph node 51 functions in stress-granule assembly
Aurélie Baguet, Sébastien Degot, Nicolas Cougot, et al.
EMBO Reports
|
June 3, 2018
Identification of MOSPD2, a novel scaffold for endoplasmic reticulum membrane contact sites
Thomas Di Mattia, Léa P Wilhelm, Souade Ikhlef, et al.
Cancer Medicine
|
August 2, 2014
Functional relationship between matrix metalloproteinase-11 and matrix metalloproteinase-14
Emilie Buache, Robert Thai, Corinne Wendling, et al.
Molecular Biology of the Cell
|
March 16, 2012
Perispeckles are major assembly sites for the exon junction core complex
Elisabeth Daguenet, Aurélie Baguet, Sébastien Degot, et al.
Cancers
|
August 23, 2020
Matrix Metalloproteinase-11 Promotes Early Mouse Mammary Gland Tumor Growth through Metabolic Reprogramming and Increased IGF1/AKT/FoxO1 Signaling Pathway, Enhanced ER Stress and Alteration in Mitochondrial UPR
Bing Tan, Amélie Jaulin, Caroline Bund, et al.
Journal of Cell Science
|
October 10, 2013
STARD3 or STARD3NL and VAP form a novel molecular tether between late endosomes and the ER
Fabien Alpy, Adrien Rousseau, Yannick Schwab, et al.
Life Science Alliance
|
March 18, 2024
A genetic screen to uncover mechanisms underlying lipid transfer protein function at membrane contact sites
Shirish Mishra, Vaishnavi Manohar, Shabnam Chandel, et al.
The EMBO Journal
|
February 25, 2026
STARD3 regulates lysosome positioning and contacts via a GSK3-controlled phosphorylation switch
Julie Eichler, Corinne Wendling, Sophie Huver, et al.
The EMBO Journal
|
October 30, 2020
FFAT motif phosphorylation controls formation and lipid transfer function of inter-organelle contacts
Thomas Di Mattia, Arthur Martinet, Souade Ikhlef, et al.
The Journal of Cell Biology
|
April 7, 2022
MOSPD2 is an endoplasmic reticulum-lipid droplet tether functioning in LD homeostasis
Mehdi Zouiouich, Thomas Di Mattia, Arthur Martinet, et al.
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of 2
Search research articles
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Showing results (11-20 of 20) with videos related to
Sort By:
Page
of 2
You have reached the last page of results.
This site can display upto 20 results.
Journal of Cell Science
|
July 27, 2007
The exon-junction-complex-component metastatic lymph node 51 functions in stress-granule assembly
Aurélie Baguet, Sébastien Degot, Nicolas Cougot, et al.
EMBO Reports
|
June 3, 2018
Identification of MOSPD2, a novel scaffold for endoplasmic reticulum membrane contact sites
Thomas Di Mattia, Léa P Wilhelm, Souade Ikhlef, et al.
Cancer Medicine
|
August 2, 2014
Functional relationship between matrix metalloproteinase-11 and matrix metalloproteinase-14
Emilie Buache, Robert Thai, Corinne Wendling, et al.
Molecular Biology of the Cell
|
March 16, 2012
Perispeckles are major assembly sites for the exon junction core complex
Elisabeth Daguenet, Aurélie Baguet, Sébastien Degot, et al.
Cancers
|
August 23, 2020
Matrix Metalloproteinase-11 Promotes Early Mouse Mammary Gland Tumor Growth through Metabolic Reprogramming and Increased IGF1/AKT/FoxO1 Signaling Pathway, Enhanced ER Stress and Alteration in Mitochondrial UPR
Bing Tan, Amélie Jaulin, Caroline Bund, et al.
Journal of Cell Science
|
October 10, 2013
STARD3 or STARD3NL and VAP form a novel molecular tether between late endosomes and the ER
Fabien Alpy, Adrien Rousseau, Yannick Schwab, et al.
Life Science Alliance
|
March 18, 2024
A genetic screen to uncover mechanisms underlying lipid transfer protein function at membrane contact sites
Shirish Mishra, Vaishnavi Manohar, Shabnam Chandel, et al.
The EMBO Journal
|
February 25, 2026
STARD3 regulates lysosome positioning and contacts via a GSK3-controlled phosphorylation switch
Julie Eichler, Corinne Wendling, Sophie Huver, et al.
The EMBO Journal
|
October 30, 2020
FFAT motif phosphorylation controls formation and lipid transfer function of inter-organelle contacts
Thomas Di Mattia, Arthur Martinet, Souade Ikhlef, et al.
The Journal of Cell Biology
|
April 7, 2022
MOSPD2 is an endoplasmic reticulum-lipid droplet tether functioning in LD homeostasis
Mehdi Zouiouich, Thomas Di Mattia, Arthur Martinet, et al.
Page
of 2