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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Cell cycle arrest rather than apoptosis is associated with measles virus contact-mediated immunosuppression in vitro
J J Schnorr1, M Seufert, J Schlender
1Institute for Virology and Immunobiology, University of Würzburg, Germany.
Insights
Measles virus (MV) infection impairs immune cell function, causing immunosuppression. Our study reveals MV inhibits lymphocyte proliferation by causing cell cycle arrest, not apoptosis, impacting immune responses.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Measles virus (MV) infection causes significant immunosuppression, affecting white blood cells and lymphocyte functions.
- Previous research indicated impaired lymphocyte proliferation after exposure to MV-infected cells or MV components.
Purpose of the Study:
- To investigate the mechanism behind MV-induced inhibition of lymphocyte proliferation.
- To determine if MV-induced immune suppression involves apoptosis or cell cycle arrest.
Main Methods:
- Exposure of peripheral blood lymphocytes (PBLs) and Jurkat cell clones to UV-inactivated MV-infected cells or MV glycoproteins.
- Assessment of apoptosis sensitivity (CD95-induced) and activation marker upregulation (IL-2R).
- Analysis of cell cycle progression (G0/G1 phase) and IL-2 release.
Main Results:
- MV-induced inhibition of lymphocyte proliferation occurred independently of apoptosis sensitivity.
- Activated lymphocytes showed unimpaired upregulation of activation markers like IL-2R.
- MV-infected cells led to cell cycle arrest in the G0/G1 phase, rather than apoptosis, hindering proliferation.
Conclusions:
- Measles virus-induced immunosuppression in lymphocytes is primarily mediated by cell cycle arrest.
- This cell cycle arrest prevents proper lymphocyte proliferation, contributing to the overall immunosuppressive state during measles infection.
Abstract:
Acute measles is associated with pronounced immunosuppression characterized both by leukopenia and impaired lymphocyte functions. In an earlier study, we found that mitogen-dependent proliferation of uninfected human peripheral blood lymphocytes (PBLs) and spontaneous proliferation of human cell lines of lymphocytic or monocytic origin was impaired after contact with UV-inactivated, measles virus (MV)-infected cells, UV-inactivated MV or with cells transfected with MV glycoproteins (gp) F and H. We now show that mitogen-stimulated PBLs and Jurkat cell clones either highly sensitive or resistant to CD95-induced apoptosis have a similar sensitivity to MV-induced inhibition and do not undergo apoptosis. Moreover, unimpaired mitogen-dependent upregulation of important activation markers, including IL-2R, was observed in PBL cultures after contact with MV-infected, UV-irradiated presenter cells. This indicates that the cells were indeed viable and acquire a state of activation. Less IL-2 was released from PBLs after contact with MV-infected presenter cells when compared with that released after contact with uninfected cells. However, mitogen-induced proliferation of PBLs was not restored by addition of IL-2 under these conditions. It appeared that a higher fraction of mitogen-stimulated PBLs accumulated in the G0/G1 phase of the cell cycle after contact with MV-infected cells. Thus, the mitogen-unresponsiveness of PBLs seen after contact with MV-infected cells is due to cell cycle arrest rather than apoptosis.
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