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Genkwadaphnin induces IFN-? via PKD1/NF-?B/STAT1 dependent pathway in NK-92 cells.


ABSTRACT: The flower buds of Daphne genkwa Sieb. et Zucc. have been used as a traditional Chinese medicine although their functional mechanisms have not been discovered yet. We have studied the potential effects of the plant extracts on natural killer (NK) cell activation, and isolated an active fraction. Genkwadaphnin (GD-1) displayed a potent efficacy to induce IFN-? transcription in NK cells with concentration- and time-dependent manners. GD-1 treatment triggered the phosphorylation of PKD1, a member of PKC family, MEK and ERK, resulting in IKK activation to induce I?B degradation, and the nuclear localization of p65, an NF-?B subunit, which regulates IFN-? transcription. GD-1 effect on IFN-? production was blocked by the addition of Rottlerin, a PKC inhibitor, CID 755673, a PKD inhibitor, or Bay11-7082, an IKK? inhibitor. The nuclear localization of p65 was also inhibited by the kinase inhibitors. Secreted IFN-? activates STAT1 phosphorylation as autocrine-loops to sustain its secretion. GD-1 induced the phosphorylation of STAT1 probably through the increase of IFN-?. STAT1 inhibitor also abrogated the sustained IFN-? secretion. These results suggest that GD-1 is involved in the activation of PKD1 and/or ERK pathway, which activate NK-?B triggering IFN-? production. As positive feedback loops, secreted IFN-? activates STAT1 and elongates its production in NK-92 cells.

SUBMITTER: Kang HB 

PROVIDER: S-EPMC4269520 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Genkwadaphnin induces IFN-γ via PKD1/NF-κB/STAT1 dependent pathway in NK-92 cells.

Kang Ho-Bum HB   Ahn Kyung-Seop KS   Oh Sei-Ryang SR   Kim Jae Wha JW  

PloS one 20141217 12


The flower buds of Daphne genkwa Sieb. et Zucc. have been used as a traditional Chinese medicine although their functional mechanisms have not been discovered yet. We have studied the potential effects of the plant extracts on natural killer (NK) cell activation, and isolated an active fraction. Genkwadaphnin (GD-1) displayed a potent efficacy to induce IFN-γ transcription in NK cells with concentration- and time-dependent manners. GD-1 treatment triggered the phosphorylation of PKD1, a member o  ...[more]

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