International audienceMetalloprotease-processed CD95L (cl-CD95L) is a soluble cytokine that implements a PI3K/Ca 2+ signaling pathway in triple-negative breast cancer (TNBC) cells. Accordingly, high levels of cl-CD95L in TNBC women correlate with poor prognosis, and administration of this ligand in an orthotopic xenograft mouse model accelerates the metastatic dissemination of TNBC cells. The molecular mechanism underlying CD95-mediated cell migration remains unknown. Here, we present genetic and pharmacologic evidence that the anti-apoptotic molecules BclxL and Bcl-2 and the pro-apoptotic factors BAD and BID cooperate to promote migration of TNBC cells stimulated with cl-CD95L. BclxL was distributed in both endoplasmic reticulum (ER) and m...
Inter-organellar communication often takes the form of Ca2+ signals. These Ca2+ signals originate fr...
Genetic stability requires coordination of a network of pathways including DNA repair/recombination ...
International audienceApoptosis has emerged as a fundamental process important in tissue homeostasis...
International audienceMetalloprotease-processed CD95L (cl-CD95L) is a soluble cytokine that implemen...
AbstractAnti-apoptotic Bcl-2 contributes to cancer formation and progression by promoting the surviv...
Anti-apoptotic Bcl-2 contributes to cancer formation and progression by promoting the survival of al...
International audienceTriple-negative breast cancers (TNBC) lacking estrogen and progesterone recept...
Proteins of the Bcl-2 family are the main regulators of apoptosis. Among the family, the Bcl-xL prot...
Triple negative breast cancer (TNBC) is an aggressive form of breast cancer, which accounts for 15-2...
International audienceOur recent findings indicate that cells exposed to transmembrane (m-CD95L) or ...
Antiapoptotic Bcl-2-family members are well known for their 'mitochondrial' functions as critical ne...
International audiencePatients affected by chronic inflammatory disorders display high amounts of so...
Inter-organellar communication often takes the form of Ca2+signals. These Ca2+signals originate from...
International audienceThe imbalance between BCL-2 homologues and pro-death counterparts frequently n...
Inter-organellar communication often takes the form of Ca2+ signals. These Ca2+ signals originate fr...
Genetic stability requires coordination of a network of pathways including DNA repair/recombination ...
International audienceApoptosis has emerged as a fundamental process important in tissue homeostasis...
International audienceMetalloprotease-processed CD95L (cl-CD95L) is a soluble cytokine that implemen...
AbstractAnti-apoptotic Bcl-2 contributes to cancer formation and progression by promoting the surviv...
Anti-apoptotic Bcl-2 contributes to cancer formation and progression by promoting the survival of al...
International audienceTriple-negative breast cancers (TNBC) lacking estrogen and progesterone recept...
Proteins of the Bcl-2 family are the main regulators of apoptosis. Among the family, the Bcl-xL prot...
Triple negative breast cancer (TNBC) is an aggressive form of breast cancer, which accounts for 15-2...
International audienceOur recent findings indicate that cells exposed to transmembrane (m-CD95L) or ...
Antiapoptotic Bcl-2-family members are well known for their 'mitochondrial' functions as critical ne...
International audiencePatients affected by chronic inflammatory disorders display high amounts of so...
Inter-organellar communication often takes the form of Ca2+signals. These Ca2+signals originate from...
International audienceThe imbalance between BCL-2 homologues and pro-death counterparts frequently n...
Inter-organellar communication often takes the form of Ca2+ signals. These Ca2+ signals originate fr...
Genetic stability requires coordination of a network of pathways including DNA repair/recombination ...
International audienceApoptosis has emerged as a fundamental process important in tissue homeostasis...