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    Date Issued2005 (1)1997 (2)Author
    Center, David M. (3)
    Kornfeld, Hardy (3)Cruikshank, William W. (2)Maciaszek, Joseph Walter (2)Parada, Nereida A. (2)View MoreUMass Chan AffiliationDepartment of Medicine, Division of Pulmonary, Allergy & Critical Care (1)Division of Pulmonary and Critical Care Medicine (1)Graduate School of Biomedical Sciences (1)Program in Virology and Immunology (1)Document TypeJournal Article (3)KeywordLife Sciences (2)Medicine and Health Sciences (2)Animals (1)Anti-HIV Agents; CD4-Positive T-Lymphocytes; Genes, Viral; Genetic Engineering; HIV Infections; HIV-1; Humans; Interleukin-16; Virus Replication (1)Calcineurin (1)View MoreJournalJournal of immunology (Baltimore, Md. : 1950) (2)Nature medicine (1)

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    Pro-IL-16 regulation in activated murine CD4+ lymphocytes

    Ren, Fucheng; Zhan, Xin; Martens, Gregory W; Lee, Jinhee; Center, David M.; Hanson, Sue Kim; Kornfeld, Hardy (2005-02-25)
    Prior DNA microarray studies suggested that IL-16 mRNA levels decrease following T cell activation, a property unique among cytokines. We examined pro-IL-16 mRNA and protein expression in resting and anti-CD3 mAb-activated primary murine CD4(+) T cells. Consistent with the microarray reports, pro-IL-16 mRNA levels fell within 4 h of activation, and this response is inhibited by cyclosporin A. Total cellular pro-IL-16 protein also fell, reaching a nadir at 48 h. Pro-IL-16 comprises a C-terminal cytokine domain and an N-terminal prodomain that are cleaved by caspase-3. Pro-IL-16 expressed in transfected tumor cells was previously shown to translocate to the nucleus and to promote G(0)/G(1) arrest by stabilizing the cyclin-dependent kinase inhibitor p27(Kip1). In the present study, we observed increased S-phase kinase-associated protein 2 mRNA expression in IL-16 null mice, but basal expression and activation-dependent regulation of p27(Kip1) were no different from wild-type mice. Stimulation with anti-CD3 mAb induced transiently greater thymidine incorporation in IL-16-deficient CD4(+) T cells than wild-type controls, but there was no difference in cell survival or in the CFSE dilution profiles. Analysis of CD4(+) T cell proliferation in vivo using BrdU labeling similarly failed to identify a hyperproliferative phenotype in T cells lacking IL-16. These data demonstrate that pro-IL-16 mRNA and protein expression are dynamically regulated during CD4(+) T cell activation by a calcineurin-dependent mechanism, and that pro-IL-16 might influence T cell cycle regulation, although not in a dominant manner.
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    IL-16 anti-HIV-1 therapy

    Viglianti, Gregory A.; Parada, Nereida A.; Maciaszek, Joseph Walter; Kornfeld, Hardy; Center, David M.; Cruikshank, William W. (1997-09-01)
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    IL-16 represses HIV-1 promoter activity

    Maciaszek, Joseph Walter; Parada, Nereida A.; Cruikshank, William W.; Center, David M.; Kornfeld, Hardy; Viglianti, Gregory A. (1997-01-01)
    IL-16 is produced by CD8+ lymphocytes and has been reported to inhibit HIV-1 and SIV replication in infected PBMCs. CD4 serves as a receptor for the secreted form of IL-16, and IL-16 binding to CD4 induces signal transduction, which affects the activation state of the cell. We hypothesized, therefore, that the effect of IL-16 on HIV-1 replication might occur at the level of virus expression. In transient transfection studies with HIV-1 LTR-reporter gene constructs we found that pretreatment of CD4+ lymphoid cells with recombinant IL-16 repressed HIV-1 promoter activity up to 60-fold, preventing both PMA and Tat activation. This effect of IL-16 required sequences contained within the core enhancer, but was not simply due to the down-regulation of transcription factors binding to this element.
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