AbstractActivation-induced cell death (AICD) in activated T lymphocytes is largely mediated by Fas/Fas ligand (FasL) interaction. The cytoplasmic adaptor molecule Fas-associated death domain protein (FADD) plays an essential role in the apoptotic signalling of the Fas death pathway. In the present study, we observed that FADD deficient (FADD−/−) Jurkat T cells undergo AICD to a similar extent as wild-type cells. AICD in wild-type Jurkat T cells is via apoptosis, whereas it is non-apoptotic in FADD−/− cells. The latter took up propidium iodide, exhibit a loss in mitochondrial membrane potential and have no detectable cleavage products of caspase-8 or -3 activation, suggesting that these cells die by necrosis. Wild-type Jurkat T cells undergo...
AbstractActivation-induced cell death (AICD) of lymphocytes is an important mechamism of self-tolera...
AbstractWe have studied the role of the T cell receptor (TCR) β chain transmembrane and cytoplasmic ...
AbstractUsing cells from TCR transgenic mice that do or do not express Fas, we show that there are t...
AbstractActivation-induced cell death (AICD) in activated T lymphocytes is largely mediated by Fas/F...
Fas-associated death domain (FADD) is a death domain containing cytoplasmic adapter molecule require...
AbstractFADD is a cytoplasmic adapter molecule that links the family of death receptors to the activ...
AbstractThe cytoplasmic adaptor protein FADD is an essential component of the death-inducing signali...
Fas is a cell surface death receptor that regulates peripheral tolerance and lymphoid homeostasis. I...
Fas is a cell surface death receptor that regulates peripheral tolerance and lymphoid homeostasis. I...
AbstractThe cytoplasmic adaptor protein FADD is an essential component of the death-inducing signali...
Cell death is achieved by two fundamentally different mechanisms: apoptosis and necrosis. Apoptosis ...
AbstractBackground: Fas (APO-1/CD95) is a member of the tumor necrosis factor receptor (TNF-R) famil...
Triggering of Fas (CD95) by its ligand (FasL) rapidly induces cell death via recruitment of the adap...
Triggering of Fas (CD95) by its ligand (FasL) rapidly induces cell death via recruitment of the adap...
AbstractFas/Apo1 and other cytotoxic receptors of the tumor necrosis factor receptor (TNFR) family c...
AbstractActivation-induced cell death (AICD) of lymphocytes is an important mechamism of self-tolera...
AbstractWe have studied the role of the T cell receptor (TCR) β chain transmembrane and cytoplasmic ...
AbstractUsing cells from TCR transgenic mice that do or do not express Fas, we show that there are t...
AbstractActivation-induced cell death (AICD) in activated T lymphocytes is largely mediated by Fas/F...
Fas-associated death domain (FADD) is a death domain containing cytoplasmic adapter molecule require...
AbstractFADD is a cytoplasmic adapter molecule that links the family of death receptors to the activ...
AbstractThe cytoplasmic adaptor protein FADD is an essential component of the death-inducing signali...
Fas is a cell surface death receptor that regulates peripheral tolerance and lymphoid homeostasis. I...
Fas is a cell surface death receptor that regulates peripheral tolerance and lymphoid homeostasis. I...
AbstractThe cytoplasmic adaptor protein FADD is an essential component of the death-inducing signali...
Cell death is achieved by two fundamentally different mechanisms: apoptosis and necrosis. Apoptosis ...
AbstractBackground: Fas (APO-1/CD95) is a member of the tumor necrosis factor receptor (TNF-R) famil...
Triggering of Fas (CD95) by its ligand (FasL) rapidly induces cell death via recruitment of the adap...
Triggering of Fas (CD95) by its ligand (FasL) rapidly induces cell death via recruitment of the adap...
AbstractFas/Apo1 and other cytotoxic receptors of the tumor necrosis factor receptor (TNFR) family c...
AbstractActivation-induced cell death (AICD) of lymphocytes is an important mechamism of self-tolera...
AbstractWe have studied the role of the T cell receptor (TCR) β chain transmembrane and cytoplasmic ...
AbstractUsing cells from TCR transgenic mice that do or do not express Fas, we show that there are t...