Literature DB >> 16870149

Involvement of HDAC1 and the PI3K/PKC signaling pathways in NF-kappaB activation by the HDAC inhibitor apicidin.

Yong Kee Kim1, Dong-Wan Seo, Dong-Won Kang, Hoi Young Lee, Jeung-Whan Han, Su-Nam Kim.   

Abstract

Histone deacetylase (HDAC) inhibitors are appreciated as one of promising anticancer drugs, but they exert differential responses depending on the cell type. We recently reported the critical role of NF-kappaB as a modulator in determining cell fate for apoptosis in response to an HDAC inhibitor. In this study, we investigate a possible signaling pathway required for NF-kappaB activation in response to the HDAC inhibitor apicidin. Treatment of HeLa cells with apicidin leads to an increase in transcriptional activity of NF-kappaB and the expression of its target genes, IL-8 and TNF-alpha. TNF-alpha expression by apicidin is induced at earlier time points than NF-kappaB activation or IL-8 expression. In addition, our data show that the early expression of TNF-alpha does not lead to activation of NF-kappaB, because disruption of TNF-alpha activity by a neutralizing antibody does not affect nuclear translocation of NF-kappaB, IkappaBalpha degradation or reporter gene activation by apicidin. However, this activation of NF-kappaB requires the PI3K and PKC signaling pathways, but not ERK or JNK. Furthermore, apicidin activation of NF-kappaB seems to result from HDAC1 inhibition, as evidenced by the observation that overexpression of HDAC1, but not HDAC2, 3 or 4, dramatically inhibits NF-kappaB reporter gene activity. Collectively, our results suggest that activation of NF-kappaB signaling by apicidin requires both the PI3K/PKC signaling pathways and HDAC1, and functions as a critical modulator in determining the cellular effect of apicidin.

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Year:  2006        PMID: 16870149     DOI: 10.1016/j.bbrc.2006.06.196

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  8 in total

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Authors:  Abraham Jacob; Janet Oblinger; Matthew L Bush; Victoria Brendel; Griffin Santarelli; Abhik R Chaudhury; Samuel Kulp; Krista M D La Perle; Ching-Shih Chen; Long-Sheng Chang; D Bradley Welling
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4.  The phosphatidylinositol 3-kinases (PI3K) inhibitor GS-1101 synergistically potentiates histone deacetylase inhibitor-induced proliferation inhibition and apoptosis through the inactivation of PI3K and extracellular signal-regulated kinase pathways.

Authors:  Juraj Bodo; Xiaoxian Zhao; Arishya Sharma; Brian T Hill; Craig A Portell; Brian J Lannutti; Alexandru Almasan; Eric D Hsi
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5.  Inhibition of histone deacetylase activity down-regulates urokinase plasminogen activator and matrix metalloproteinase-9 expression in gastric cancer.

Authors:  Kyung Hee Lee; Eun Young Choi; Min Kyoung Kim; Kyeong Ok Kim; Byung Ik Jang; Se Won Kim; Sang Woon Kim; Sun Kyo Song; Jae-Ryong Kim
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6.  Suppression of neurotensin receptor type 1 expression and function by histone deacetylase inhibitors in human colorectal cancers.

Authors:  Xiaofu Wang; Lindsey N Jackson; Sara M Johnson; Qingding Wang; B Mark Evers
Journal:  Mol Cancer Ther       Date:  2010-07-27       Impact factor: 6.261

Review 7.  Histone deacetylase inhibitors and cell death.

Authors:  Jing Zhang; Qing Zhong
Journal:  Cell Mol Life Sci       Date:  2014-06-05       Impact factor: 9.261

8.  The human biliverdin reductase-based peptide fragments and biliverdin regulate protein kinase Cδ activity: the peptides are inhibitors or substrate for the protein kinase C.

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  8 in total

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