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Suppression of Fas/APO-1-mediated apoptosis by mitogen-activated kinase signaling
T H Holmström1, S C Chow, I Elo
1Turku Center for Biotechnology, University of Turku, Finland.
Abstract:
Jurkat T cells undergo rapid apoptosis upon stimulation of the Fas/APO-1 (CD95) receptor. We examined the role of the mitogen-activated protein kinase (MAPK) cascade as a negative regulator of Fas-mediated apoptosis. To this end, we used both physiologic and artificial activators of MAPK, all of which activate MAPK by distinct routes. MAPK activity could be efficiently elevated by two T cell mitogens, the lectin PHA and an agonistic Ab to the T cell receptor complex as well as by the type 1 and 2A phosphatase inhibitor, calyculin A, and the protein kinase C-activating phorbol ester, tetradecanoyl phorbol acetate. All these treatments were effective in preventing the characteristic early and late features of Fas-mediated apoptosis, including activation of caspases. Our results indicate that the elevated MAPK activities intervene upstream of caspase activation. The degree of MAPK activation by the different stimuli used in our study corresponds well to their potency to inhibit apoptosis, indicating that MAPK activation serves as an efficient modulator of Fas-mediated apoptosis. The role of MAPK in modulation of Fas-mediated apoptosis was further corroborated by transient transfection with constitutively active MAPK kinase, resulting in complete inhibition of the Fas response, whereas transfection with a dominant negative form of MAPK kinase had no effect. Furthermore, the apoptosis inhibitory effect of the MAPK activators could be abolished by the specific MAPK kinase inhibitor PD 098059. Modulation of Fas responses by MAPK signaling may determine the persistence of an immune response and may explain the insensitivity of recently activated T cells to Fas receptor stimulation.
Insights
Mitogen-activated protein kinase (MAPK) activation inhibits Fas-mediated apoptosis in T cells by acting upstream of caspase activation. This finding suggests MAPK signaling modulates immune response persistence and T cell insensitivity to Fas receptor stimulation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Jurkat T cells are susceptible to apoptosis upon Fas/APO-1 (CD95) receptor stimulation.
- The mitogen-activated protein kinase (MAPK) cascade's role in regulating this process is not fully understood.
Purpose of the Study:
- To investigate the role of the MAPK cascade as a negative regulator of Fas-mediated apoptosis in T cells.
- To determine the mechanism by which MAPK signaling affects Fas-induced cell death.
Main Methods:
- Activation of MAPK using various physiological and artificial stimuli (PHA, anti-TCR antibody, calyculin A, phorbol ester).
- Assessment of apoptosis markers, including caspase activation.
- Genetic manipulation using constitutively active and dominant-negative MAPK kinase.
- Inhibition of MAPK signaling with PD 098059.
Main Results:
- Elevated MAPK activity by diverse stimuli effectively prevented Fas-mediated apoptosis and caspase activation.
- MAPK activation was found to intervene upstream of caspase activation.
- The potency of apoptosis inhibition correlated with the degree of MAPK activation.
- Constitutively active MAPK kinase inhibited the Fas response, while dominant-negative forms had no effect.
- The apoptosis-inhibitory effects of MAPK activators were blocked by PD 098059.
Conclusions:
- MAPK signaling acts as an efficient negative regulator of Fas-mediated apoptosis.
- MAPK activation modulates Fas responses, potentially influencing immune response duration and T cell sensitivity.
- These findings elucidate a key mechanism in T cell immune regulation.