| Literature DB >> 30348136 |
Brian Tung1, Ding Ma1,2, Shuyan Wang1,2, Olutobi Oyinlade1,2, John Laterra1,2,3,4, Mingyao Ying1,2, Sheng-Qing Lv5, Shuang Wei6, Shuli Xia7,8.
Abstract
BACKGROUND: The dismal prognosis of patients with glioblastoma (GBM) is attributed to a rare subset of cancer stem cells that display characteristics of tumor initiation, growth, and resistance to aggressive treatment involving chemotherapy and concomitant radiation. Recent research on the substantial role of epigenetic mechanisms in the pathogenesis of cancers has prompted the investigation of the enzymatic modifications of histone proteins for therapeutic drug targeting. In this work, we have examined the function of Krüppel-like factor 9 (KLF9), a transcription factor, in chemotherapy sensitization to histone deacetylase inhibitors (HDAC inhibitors).Entities:
Keywords: Apoptosis; Cancer stem cells; Glioblastoma; Glioblastoma stem cells; HDAC inhibitors; KLF9; Necropotosis
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Year: 2018 PMID: 30348136 PMCID: PMC6198521 DOI: 10.1186/s12885-018-4874-8
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
Fig. 1GBM stem cell (GSC) viability was reduced by forced KLF9 expression and HDAC inhibitor. a Dox-induced KLF9 expression in GBM1A neurosphere cells in a dose-dependent manner. b MTS assays of cell viability in GBM1A cells treated with Dox (0.1 μg/ml), LBH589 (25–100 nmol/L) alone, and combined treatment for 48 h. c Similar enhanced cell death in GBM1B cells was observed when treated with Dox (0.1 μg/ml) and LBH589 at 25–100 nmol/L. d Trypan blue staining showing that the combined treatment of Dox and LBH598 significantly induced cell death in GSCs. Neurosphere cells were dissociated to single cell suspension by vigorously pipetting and stained with trypan blue for 10 min. Number of trypan blue positive cells (white bar) and live cells (black bar) were counted and plotted. e Phase contrast photographs of GBM1A neurosphere cells treated with Dox, LBH589 alone, and combined treatment for 48 h. Upon combined Dox + LBH589 treatment, neurospheres displayed massive cell death. Bar = 50 μm. f GBM1B cells were grown on laminin-coated surfaces as adherent cultures and treated with Dox + LBH589. After 48 h, significant cell death was observed under the combined treatment. Bar = 50 μm. g A close look at the morphology of dead cells in the Dox + LBH treated cultures revealed the process of both apoptosis and necrosis. The non-viable cells exhibited apoptotic cell bodies (left panel) and membrane rapture, ghost-like cell debris (right panel), indicating a necrotic phenotype. Bar = 10 μm. *: P < 0.05
Fig. 2Isobologram analysis indicated KLF9 expression and HDAC inhibitors synergistically induced GSC death. a, b Enhanced cell viability loss induced by KLF9 expression and HDAC inhibitors SAHA and TSA in GBM1A (a) and GBM1B cells (b). MTS assays demonstrated that SAHA (10 μmol/L) or TSA (50 nmol/L) alone did not markedly induce cell death. The combination of Dox and SAHA or TSA induced ~ 60–65% GSC loss after 48 h of simultaneous treatment. c Systematic characterization of cell viability (control as 100%) in GSCs treated with LBH589 alone at different concentrations, or in the presence of Dox (0.1 μg/ml). IC50 was calculated by Graphpad Prism. d Cell viability assays (control as 100%) under the treatment of Dox at different concentrations, or in the presence of LBH589 (25 nmol/L). Isobologram index (Ix) was calculated as 0.41, indicating synergistic cell killing effect of these two treatments. *: P < 0.05
Fig. 3HDAC inhibitor LBH589 induced cell cycle arrest but not mitotic catastrophe. a Cell cycle analysis of GBM1A cells treated with Dox, LBH589, and Dox + LBH589 for 24 h. Cells were not synchronized before experiments. In the combined treatment of LBH589 and Dox, cell cycle was arrested at S-phase (6.57%) and there was a significant increase in sub-G1/G0 portion (~ 19%), indicating cell death. b Similar cell cycle experiment results were found in GBM1B neurosphere cells. c Expression of cell cycle modulators including cyclins, p21, p27 and cdc2 were examined in GBM1A cells treated with Dox and LBH589 alone or combined. d Time course of cell cyle progression under the treatment of Dox + LBH589. Cells were growth arrested by thymidine for 8 h followed by release from cell cycle arrest for indicated time points. Cell cycle analysis indicated that at 18 h, Dox + LBH589-treated cells had a slight decrease at G2/M phase without increase in cell accumulation at sub-G1/G0 phase. At 30 h and 42 h, there was a dramatic decrease in cells at G2/M phase and a slight increase in cells at sub G1/G0 phase, indicating no accumulation of cells in G2/M phase before cell death. *: P < 0.05
Fig. 4Forced KLF9 expression and HDAC inhibitor LBH589 induced apoptosis. a, b Early stage apoptosis (Annexin-V positive, PI negative) and late stage apoptosis or necrosis (Annexin-V positive, PI positive) in GBM1A cells (A) under different treatment for 24 h were measured by flow cytometry. Similar experiments were performed in GBM1B cells (B). c Increased cleaved caspase 3 and cleaved PARP were detected in GSCs treated with Dox + LBH589. d Expression of pro-apoptotic proteins was examined in GSCs. Pro-apoptotic proteins Bak, Bik, Bax, Bid and Noxa were up-regulated by KLF9 expression. e Expression of anti-apoptotic proteins survivin and XIAP was down regulated by LBH589 alone or in the presence of Dox. f The pan-caspase inhibitor z-vad had minimal protective effect on KLF9-expressing GSCs treated with LBH589. *: P < 0.05
Fig. 5Forced KLF9 expression and HDAC inhibitor LBH589 induced necroptosis in GSCs. a Western blot analysis indicated that there was no activation of autophagy marker LC3B-I in GSC cultures under different treatment conditions. b The combination of z-vad with calpain inhibitors or calpaithin inhibitors had minimal effect to protect KLF9-expressing GBM1A cells from death induced by LBH589. Two necroptosis inhibitors, Nec-1 and NSA, together with z-vad, significantly rescued GBM1A cells from death induced by Dox + LBH589. c Nec-1 or NSA alone did not protect GBM1B cells from death induced by Dox + LBH589. Cell death was completely blocked only when both apoptosis inhibitor and necroptosis inhibitor were applied together in GBM1B cells treated with Dox + LBH589. *: P < 0.05. d A model of the synergistic anti-tumor effect by combining HDAC inhibitors and KLF9 expression in GSCs