| Literature DB >> 30606233 |
Jia Song1,2,3, Xiaochao Zhang1,2,3, Zhibin Liao1,2,3, Huifang Liang1,2,3, Liang Chu1,2,3, Wei Dong1,2,3, Xuewu Zhang1,2,3, Qianyun Ge1,2,3, Qiumeng Liu1,2,3, Pan Fan1,2,3, Zhanguo Zhang4,5,6, Bixiang Zhang7,8,9.
Abstract
BACKGROUND: Heme oxygenase 1 (HO-1) has been reported to be very important in the pathogenesis or progression of multiple types of cancer. Identification of novel hmox1 binding proteins may reveal undefined oncogenes, tumor suppressors, signaling pathways, and possible treatment targets.Entities:
Keywords: 14–3-3ζ; HO-1; Hepatocellular carcinoma; Proliferation; STAT3
Mesh:
Substances:
Year: 2019 PMID: 30606233 PMCID: PMC6319010 DOI: 10.1186/s13046-018-1007-9
Source DB: PubMed Journal: J Exp Clin Cancer Res ISSN: 0392-9078
Fig. 1Identification of 14–3-3ζ as a binding partner for HO-1 (a) MS analysis of HO-1-associated proteins. b Whole cell lysates from HEK293 cell transfected with Flag-tagged HO-1 were subjected to co-IP with anti-FLAG or anti-14-3-3ζ antibodies and followed by immunoblotting with antibody against FLAG, 14–3-3ζ. c HEK293 cells were transfected with a plasmid encoding Flag-tagged HO-1. The lysates were immunoprecipitated with anti-14-3-3 antibodies against the indicated 14–3-3 isoforms, and were then analyzed by western blotting. d Bel7402 cell lysate was subjected to co-IP with anti-14-3-3ζ or anti-HO-1, followed by immunoblotting with antibody against 14–3-3ζ, HO-1. e HEK293 cells were transfected with Flag-tagged HO-1. After 24 h of transfection, immunofluorescence staining was performed to observe the co-localization of exogenously expressed HO-1 and 14–3-3ζ. Scale bar denotes 50 μm. f Confocal experiments were performed to determine the co-localization between endogenous HO-1 and 14–3-3ζ. Scale bar denotes 10 μm. g Schematic diagram of FLAG-tagged full-length or deletion constructs of HO-1 used in this study. h Whole cell lysate from HEK293 cell transfected with the indicated plasmids were subjected to co-IP with anti-FLAG and followed by immunoblotting with indicated antibodies. The asterisk denotes a nonspecific band. WCL denotes whole-cell lysate
Fig. 214–3-3ζ stabilizes HO-1 protein expression by protecting HO-1 from ubiquitin-mediated degradation (a, b) Western blot analysis of 14–3-3ζ and HO-1 protein levels in Bel7402 and HLF cell lines transfected with the sh14–3-3ζ plasmids. c, d qRT-PCR analysis of 14–3-3ζ and HO-1 mRNA levels after 14–3-3ζ knockdown. e, f 14–3-3ζ knockdown cells were treated with cycloheximide (CHX) for the indicated times and the expression of endogenous HO-1 protein was analyzed by western blotting (left panel). Three independent experiments were performed and results were quantified by ImageJ software and plotted (right panel). g, h 14–3-3ζ knockdown cells were treated with 20 μM MG132 or dimethylsulfoxide for 10 h. The cells were harvested and analyzed by western blotting with the indicated antibodies. i, j 14–3-3ζ knockdown cells were treated with 20 μM MG132 for 10 h, and the cell lysates were immunoprecipitated with an anti-HO-1 antibody followed by immunoblotting with an anti-ubiquitin antibody
Fig. 314–3-3ζ promotes cell proliferation in vitro and tumor growth in vivo (a-c) Cell proliferation was measured by the CCK-8 assay. ***P < 0.001 compared with corresponding NC or Vector. d-f Cell proliferation was examined by a colony formation assay, and relative clone number was used for statistic analysis. Data represent the mean ± SD of three independent experiments. P-values were calculated using the Student’s t-test. g-i 14–3-3ζ knockdown suppresses HCC tumor growth in vivo. g: Photos of the xenograft tumors; h Tumor volume; i Tumor weights. ***P < 0.001
Fig. 4HO-1 is implicated in 14–3-3ζ-mediated tumor proliferation (a) 14–3-3ζ-overexpressing cells were stably transfected with shNC, or shHO-1 plasmids, to generate control (Vec-shNC) stable cells, 14–3-3ζ overexpressing (14–3-3ζ-shNC) stable cells, and 14–3-3ζ overexpressing but HO-1 knockdown (14–3-3ζ-shHO-1) stable cells. The expressions of HO-1 and 14–3-3ζ were examined by western blot analysis. b and c CCK8 assay and colony formation assay were performed for the indicated cells. d-f The indicated cells were subjected to an in vivo xenograft assay and tumor growth was assessed. d Photos of the xenograft tumors; e Tumor volume; f Tumor weights
Fig. 514–3-3ζ/HO-1 complex could regulate STAT3 signaling (a and c) p-STAT3 (Ser-727 and Tyr-705) and total STAT3 levels in the HO-1 knockdown cells (a) and HO-1-overexpressing cells (c) were determined by western blotting. b Immunofluorescent staining of pY-STAT3 in HO-1 knockdown cells. 4′,6-Diamidino-2-phenylindole dihydrochloride staining of the nucleus was done (blue); scale bar denotes 50 μm. d HO-1-overexpressing cells were stably transfected with shNC or sh14–3-3ζ plasmids. pY-STAT3 levels in the indicated cells were analyzed by western blotting. e and g pY-STAT3 levels in 14–3-3ζ knockdown cells (d) and 14–3-3ζ-overexpressing cells (e) were analyzed by western blotting. f Immunofluorescent staining of pY-STAT3 in 14–3-3ζ knockdown cells. h Western blot analysis to qualify pY-STAT3 levels in 14–3-3ζ-overexpressing SK-hep1 cells after being transfected with siHO-1 (or siNC as control) for 48 h
Fig. 6STAT3 pathway is involved in 14–3-3ζ/HO-1 regulation of HCC cell proliferation (a) HO-1-overexpressing cells were stably transfected with shNC or shSTAT3 plasmids to generate control (Vec-shNC), HO-1 overexpressing (HO-1-shNC), and HO-1 overexpressing but STAT3 knockdown (HO-1-shSTAT3) stable cells. The pY-STAT3 and total STAT3 levels were examined by western blot analysis. b and c CCK8 and colony formation assays were performed for indicated cells. d-f The indicated cells were assessed using a xenograft assay, and tumor growth was measured. g si-STAT3 was transfected into SK-hep1 cells to achieve STAT3 knockdown and block phosphorylation of STAT3, as verified using western blot assays. h Western blot analysis to quantify pY-STAT3 level in 14–3-3ζ-overexpressing cells after transfection with siSTAT3 (or siNC as control) for 48 h. i After transfection with siSTAT3 (or siNC as control) for 48 h, the cells were collected to performed CCK8 assay