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The naturally processed CD95L Elicits a c-yes/Calcium/PI3K-driven cell migration pathway
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نویسنده
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tauzin s. ,chaigne-delalande b. ,selva e. ,khadra n. ,daburon s. ,contin-bordes c. ,blanco p. ,le seyec j. ,ducret t. ,counillon l. ,moreau j.-f. ,hofman p. ,vacher p. ,legembre p.
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منبع
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plos biology - 2011 - دوره : 9 - شماره : 6
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چکیده
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Patients affected by chronic inflammatory disorders display high amounts of soluble cd95l. this homotrimeric ligand arises from the cleavage by metalloproteases of its membrane-bound counterpart,a strong apoptotic inducer. in contrast,the naturally processed cd95l is viewed as an apoptotic antagonist competing with its membrane counterpart for binding to cd95. recent reports pinpointed that activation of cd95 may attract myeloid and tumoral cells,which display resistance to the cd95-mediated apoptotic signal. however,all these studies were performed using chimeric cd95ls (oligomerized forms),which behave as the membrane-bound ligand and not as the naturally processed cd95l. herein,we examine the biological effects of the metalloprotease-cleaved cd95l on cd95-sensitive activated t-lymphocytes. we demonstrate that cleaved cd95l (cl-cd95l),found increased in sera of systemic lupus erythematosus (sle) patients as compared to that of healthy individuals,promotes the formation of migrating pseudopods at the leading edge of which the death receptor cd95 is capped (confocal microscopy). using different migration assays (wound healing/boyden chamber/endothelial transmigration),we uncover that cl-cd95l promotes cell migration through a c-yes/ca2+/pi3k-driven signaling pathway,which relies on the formation of a cd95-containing complex designated the misc for motility-inducing signaling complex. these findings revisit the role of the metalloprotease-cleaved cd95l and emphasize that the increase in cl-cd95l observed in patients affected by chronic inflammatory disorders may fuel the local or systemic tissue damage by promoting tissue-filtration of immune cells. © 2011 tauzin et al.
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آدرس
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université de rennes-1,rennes,france,irset/ea-4427 seraic,rennes, France, cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux, France, université de nice sophia antipolis,inserm eri21/ea 4319,nice, France, université de rennes-1,rennes,france,irset/ea-4427 seraic,rennes, France, cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux, France, cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux,france,chu bordeaux,bordeaux, France, cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux,france,chu bordeaux,bordeaux, France, université de rennes-1,rennes,france,irset/ea-4427 seraic,rennes, France, université de bordeaux-2,bordeaux,france,inserm u1045,centre de recherche cardio-thoracique de bordeaux,bordeaux, France, université de nice-sophia antipolis,umr 6097 faculté des sciences parc valrose,nice, France, cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux,france,chu bordeaux,bordeaux, France, université de nice sophia antipolis,inserm eri21/ea 4319,nice,france,chu de nice et centre de ressources biologiques-tumorothèque,nice, France, université de bordeaux-2,bordeaux,france,inserm u916,institut bergonié,bordeaux, France, université de rennes-1,rennes,france,irset/ea-4427 seraic,rennes,france,cnrs umr 5164,bordeaux,france,université de bordeaux-2,bordeaux, France
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Authors
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