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    Tumor-Shed PGE(2) Impairs IL2R gamma c-Signaling to Inhibit CD4(+) T Cell Survival: Regulation by Theaflavins

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    journal.pone.0007382.pdf (506.4Kb)
    Date
    2009-10-08
    Author
    Chattopadhyay, Sreya
    Bhattacharyya, Sankar
    Saha, Baisakhi
    Chakraborty, Juni
    Mohanty, Suchismita
    Hossain, Dewan Md. Sakib
    Banerjee, Shuvomoy
    Das, Kaushik
    Sa, Gaurisankar
    Das, Tanya
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    Abstract
    Background: Many tumors are associated with decreased cellular immunity and elevated levels of prostaglandin E2 (PGE2), a known inhibitor of CD4+ T cell activation and inducer of type-2 cytokine bias. However, the role of this immunomodulator in the survival of T helper cells remained unclear. Since CD4+ T cells play critical roles in cell-mediated immunity, detail knowledge of the effect tumor-derived PGE2 might have on CD4+ T cell survival and the underlying mechanism may, therefore, help to overcome the overall immune deviation in cancer. Methodology/Principal Findings: By culturing purified human peripheral CD4+ T cells or Jurkat cells with spent media of theaflavin- or celecoxib-pre-treated MCF-7 cells, we show that tumor-shed PGE2 severely impairs interleukin 2 receptor cc (IL2R gamma c)-mediated survival signaling in CD4+ T cells. Indeed, tumor-shed PGE2 down-regulates IL2R gamma c expression, reduces phosphorylation as well as activation of Janus kinase 3 (Jak-3)/signal transducer and activator of transcription 5 (Stat-5) and decreases Bcl-2/Bax ratio thereby leading to activation of intrinsic apoptotic pathway. Constitutively active Stat-5A (Stat5A1*6) over-expression efficiently elevates Bcl-2 levels in CD4+ T cells and protects them from tumor-induced death while dominant-negative Stat-5A over-expression fails to do so, indicating the importance of Stat-5A-signaling in CD4+ T cell survival. Further support towards the involvement of PGE2 comes from the results that (a) purified synthetic PGE2 induces CD4+ T cell apoptosis, and (b) when knocked out by small interfering RNA, cyclooxygenase-2 (Cox-2)-defective tumor cells fail to initiate death. Interestingly, the entire phenomena could be reverted back by theaflavins that restore cytokine-dependent IL2Rcc/Jak-3/Stat-5A signaling in CD4+ T cells thereby protecting them from tumor-shed PGE2-induced apoptosis. Conclusions/Significance: These data strongly suggest that tumor-shed PGE2 is an important factor leading to CD4+ T cell apoptosis during cancer and raise the possibility that theaflavins may have the potential as an effective immunorestorer in cancer-bearer.
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    1. Full Text Link ->
    http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007382
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    2. Scopus : Citation Link ->
    http://www.scopus.com/record/display.url?eid=2-s2.0-70350228294&origin=resultslist&sort=plf-f&src=s&st1=Tumor-Shed+PGE2+Impairs+IL2R%CE%B3c-Signaling+to+Inhibit+CD4%2b+T+Cell+Survival%3a+Regulation+by+Theaflavins&sid=5IQ16cK3PP4QQ69Q4D09VN0%3a400&sot=b&sdt=b&sl=119&s=TITLE-ABS-KEY-AUTH%28Tumor-Shed+PGE2+Impairs+IL2R%CE%B3c-Signaling+to+Inhibit+CD4%2b+T+Cell+Survival%3a+Regulation+by+Theaflavins%29&relpos=0&relpos=0&searchTerm=TITLE-ABS-KEY-AUTH(Tumor-Shed%20PGE2%20Impairs%20IL2R%CE%B3c-Signaling%20to%20Inhibit%20CD4+%20T%20Cell%20Survival:%20Regulation%20by%20Theaflavins)
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