| Literature DB >> 26561336 |
Bin Shao1,2, Xiawei Wei1,2, Min Luo1,2, Jiayun Yu1,2, Aiping Tong1,2, Xuelei Ma1,2, Tinghong Ye1,2, Hongxin Deng1,2, Yaxiong Sang2, Xiao Liang1,2, Yu Ma1,2, Qinjie Wu1,2, Wei Du1,2, Jing Du1,2, Xiang Gao1,2, Yi Wen1,2, Ping Fu1,2, Huashan Shi1,2, Shuntao Luo1,2, Yuquan Wei1,2.
Abstract
Myeloid-derived suppressor cells (MDSCs) are known to play important roles in the development of immunosuppressive tumor microenvironment. A20 is a zinc-finger protein which could negatively regulate apoptosis in several cell types. However, the role of A20 in tumor microenvironment remains largely unknown. In this study, we found that A20 was over-expressed in MDSCs. The treatment of tumor-bearing mice with small interfering RNA targeting A20 (si-A20) inhibited the growth of tumors. The infiltration of MDSCs was dramatically reduced after si-A20 treatment, as compared to control groups, whereas the numbers of dendritic cells and macrophages were not affected. Also, injection of si-A20 improved T cell mediated tumor-specific immune response. Depletion of MDSCs with anti-Gr1 antibody showed similar antitumor effect and improved T cell response. TNF-α was highly expressed after si-A20 injection. Furthermore, si-A20 induced apoptosis of MDSCs in the presence of TNF-α both in vivo and in vitro. Cleaved Caspase-3 and Caspase-8 were elevated with the activation of JNK pathway after the induction of MDSC apoptosis by si-A20. Thus, our findings suggested that knockdown of A20 in tumor site inhibited tumor growth at least through inducing the apoptosis of MDSCs. A20 might be a potential target in anticancer therapy.Entities:
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Year: 2015 PMID: 26561336 PMCID: PMC4642332 DOI: 10.1038/srep16437
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1A20 expression in tumor microenvironment and the knockdown of A20 by si-RNA.
(a) The expression of A20 in different cell lines. A20 expression was tested by flow cytometry in E.G7, B16-F10, CT26, 4T1 and L929 cell lines. Total number of 30000 cells was analyzed. The grey area represents the isotype control. si-A20 was used to test the specificity of the staining. The efficiency of knockdown of A20 was illustrated as reduction in mean fluorescence intensity. (b) Representative IHC analysis of A20 in E.G7 tumor sections (n = 5). Scale bar 50 μm. (c) The immunofluorescence staining of A20-positive and Gr1-positive cells. E.G7 tumor frozen sections were stained with DAPI (blue), Gr1 (Alexa-595) and A20 (FITC) (n = 5). Scale bar 50μm. (d,e) Knockdown of A20 by si-RNA in L929 cell lines was confirmed by qRT-PCR and western blotting. L929 cells were transfected with si-RNA in vitro and the mRNA level and protein level of A20 were detected. (f) Decrease of A20 expression in tumor tissue after si-RNA treatment. E.G7 tumor-bearing mice were treated with si-RNA intratumorally and CD11b+ cells were isolated from pooled tumor tissue suspension (n = 3–5). Data were obtained from two independent experiments. Data represent means ± SD. *p < 0.05 compared to si-SCR’ group, **p < 0.01 compared to si-SCR (ANOVA test).
Figure 2Si-A20 treatment in mice inhibits tumor growth and reduces tumor-associated MDSCs.
(a,b) Treatment of mice with si-RNA inhibited E.G7 tumor growth (n = 5). Tumor volume of each mouse was valued on Day 19. (b) Data are representative of two independent experiments (n = 5). Data represent means ± SD. *p < 0.05 compared to si-SCR’, **p < 0.01 compared to si-SCR (ANOVA test). (c) Analysis of infiltrated immune cells in tumor after si-RNA treatment. Tumors were subjected to flow cytometry assay after si-RNA treatment on Day 14. Total number of 30000 cells was analyzed. Numbers illustrated indicate the percentage of the cells in total cells. Data are representative of two independent experiments (n = 3). (d) The proportions of Gr1+CD11b+ MDSCs, Gr1+CD11b− granulocytes, CD11c+ DCs, F4/80+ macrophages were analyzed by flow cytometry on Day 7 and 14 after treatment (n = 3). (e) The reduction of MDSCs confirmed by immunofluorescence staining in tumor section. The positive cells in ten high powered fields (HPF) were counted (n = 5). Scale bar 50 μm. (f) Si-A20 treatment inhibited E.G7 (left) and B16-F10 (right) tumor growth in mice (n = 5). Data are representative of two independent experiments. Data represent means ± SD. *p < 0.05 compared to si-SCR (ANOVA test).
Figure 3Si-A20 treatment improves T cells activation in tumor-bearing mice.
(a) Lymphocytes isolated from tumors were subjected to flow cytometry assay (n = 3). Total number of 100000 cells was analyzed. Cells were gated by CD3 lymphocyte region in tumors and cell percentages were illustrated as percentages of the positive cells in gated lymphocytes. For CD69 staining, cells were gated by CD4+ or CD8+ region. The percentages of positive cells in gated cells were illustrated. Numbers illustrated indicate the percentage of the cells in gated cells. (b) Lymphocytes from lymph nodes were evaluated by flow cytometry assay (n = 3). Total number of 30000 cells was analyzed. For CD69 staining, cells were gated by CD4+ or CD8+ region. The percentages of positive cells in gated cells were illustrated. Numbers illustrated indicate the percentage of the cells in total cells. Data are representative of two independent experiments (n = 3). Data represent means ± SD. *p < 0.05 compared to si-SCR (ANOVA test).
Figure 4Knockdown of A20 overcomes tumor-induced T-cell tolerance.
(a,b) Analysis of antigen-specific T cell response after the treatment of si-RNA and PBS. T cells isolated from lymph nodes in different groups of mice were subjected to IFN-γ intracellular staining after the re-stimulation with OT-I peptide (a) or OT-II peptide (b) (n = 3). Total number of 30000 cells was analyzed. Cells were gated by CD4+ or CD8+ region. Percentages of the positive cells are illustrated. Numbers illustrated indicate the percentage of the cells in total cells. (c) Lymphocytes of draining lymph nodes from immunized mice were subjected to Foxp3 intracellular staining (n = 3). Total number of 30000 cells was analyzed. Cells were gated by CD4+. Numbers illustrated indicate the percentage of the cells in total cells. Data are representative of two independent experiments (n = 3). Data represent means ± SD. *p < 0.05 compared to si-SCR (ANOVA test).
Figure 5Reduction of MDSC with anti-Gr1 antibody restores T cell activation.
(a) The efficiency of MDSC elimination by anti-Gr1 antibody. The percentages of Gr1+ MDSCs were examined by flow cytometry (n = 3). (b) Anti-Gr1antibody treatment inhibited E.G7 tumor growth (n = 3). (c) The proportion of T cells was measured in tumor tissues in mice treated with anti-IgG and anti-Gr1 antibody. Total number of 100000 cells was analyzed. Cells were gated by CD3 lymphocyte region in tumors. For CD69 staining, cells were gated by CD4+ or CD8+ region. Numbers illustrated indicate the percentage of the cells in gated cells. Data were representative of three independent experiments (n = 3). Data represent means ± SD. *p < 0.05, **p < 0.01 compared with control group (Student’s t-test).
Figure 6Si-A20 treatment induces the apoptosis of MDSCs in vivo.
(a,b) Immunohistochemical and ELISA analysis for the expression of TNF-α in tumor in mice treated with PBS, si-SCR and si-A20 (n = 3). Scale bar 100 μm. (c) The expression of cleaved caspase-3 in tumor sections in si-A20 treated mice. Tissues were stained with DAPI (blue), antibodies to Gr1 (Alexa-595) and cleaved caspase-3 (FITC) and analyzed by confocal microscopy, Two independent experiments were performed (n = 5). Scale bar 50 μm. Data were representative of two independent experiments. Data represent means ± SD. *p < 0.05 compared to si-SCR (ANOVA test).
Figure 7Knockdown of A20 induces the apoptosis of MDSCs through JNK pathway.
(a) Isolation of MDSCs from tumor tissue was confirmed by flow cytometry. Total number of 30000 cells was analyzed. Numbers illustrated indicate the percentage of the cells in total cells (n = 5). (b) mRNA levels of A20 from the isolated MDSCs from spleen and E.G7 tumor were measured (n = 3). (c) Fluorescence immunostaining of Gr1 and A20 positive cells in MDSCs isolated from tumor tissue. Scale bar 50 μm. (d) Si-A20 treatment induced the apoptosis of MDSC in vitro. Gr1+CD11b+ cells were isolated from tumors in E.G7 tumor-bearing mice and transfected with si-RNA. Apoptosis of MDSCs were confirmed by flow cytometry. Total number of 30000 cells was analyzed. Numbers illustrated indicate the percentage of the cells in total cells. MDSCs were cultured with a mixed medium (TCCM: complete RPMI 1640 = 1:1) with GM-CSF (10 ng/ml). Percentages of the cells in the regions were illustrated. (e) Statistic analysis of (d). (f) Si-A20 induced the apoptosis of MDSCs through JNK pathway. p-JNK, activated caspase-3 and activated caspase-8 were analyzed by western blotting after treatment of MDSCs with si-A20 and TNF-α. Data were representative of two independent experiments. Data represent means ± SD. *p < 0.05 (ANOVA test, Student’s t-test).