PDL1 And LDHA act as ceRNAs in triple negative breast cancer by regulating miR-34a

被引:44
作者
Huang, Xiaojia [1 ]
Xie, Xinhua [1 ]
Wang, Hua [2 ]
Xiao, Xiangsheng [1 ]
Yang, Lu [1 ]
Tian, Zhi [3 ]
Guo, Xiaofang [3 ]
Zhang, Lijuan [1 ]
Tang, Hailin [1 ]
Xie, Xiaoming [1 ]
机构
[1] Sun Yat Sen Univ, State Key Lab Oncol South China, Collaborat Innovat Ctr Canc Med, Dept Breast Oncol,Canc Ctr, 651 East Dongfeng Rd, Guangzhou 510060, Guangdong, Peoples R China
[2] Sun Yat Sen Univ, State Key Lab Oncol South China, Collaborat Innovat Ctr Canc Med, Dept Hematol Oncol,Canc Ctr, Guangzhou 510060, Guangdong, Peoples R China
[3] Univ S Florida, Coll Pharm, Tampa, FL USA
来源
JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH | 2017年 / 36卷
基金
中国国家自然科学基金;
关键词
PDL1; LDHA; miR-34a; Competitive endogenous RNAs; Triple negative breast cancer; LACTATE-DEHYDROGENASE; TUMOR-GROWTH; PD-1; TUMORIGENESIS; COMPETITION; INHIBITION; GLYCOLYSIS; METABOLISM; CHECKPOINT; RECEPTOR;
D O I
10.1186/s13046-017-0593-2
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Backgroud: The purpose of this study was to elucidate the regulation of programmed death ligand 1 (PDL1), lactate dehydrogenase A (LDHA) and miR-34a in triple negative breast cancer (TNBC) and to explore the function and mechanism of PDL1 and LDHA as competitive endogenous RNAs (ceRNAs) in TNBC via regulation of miR-34a. Methods: Western blotting, quantitative RT-PCR (qRT-PCR) and immunohistochemistry (IHC) assays were conducted to explore the expression of PDL1, LDHA and miR-34a in TNBC and correlations between them. MTS cell viability, Transwell migration, glucose consumption and lactate production assays and flow cytometry were performed and mouse xenograft models were constructed to explore the functions and regulation of the PDL1 3'UTR and LDHA 3' UTR and miR-34a in TNBC. Results: We found that PDL1 and LDHA were synchronously upregulated in TNBC cell lines and tissues. Co-expression of PDL1 and LDHA was correlated with poor outcome in TNBC. Both PDL1 and LDHA are targets of miR34a, and the 3' UTRs of PDL1 and LDHA both have binding sites for miR-34a. The functions of PDL1 and LDHA were inhibited by miR-34a. In addition, PDL1 and LDHA acted as ceRNAs to promote the expression and function of each other through regulation of miR-34a in TNBC. Conclusions: This study provides a new theoretical basis for a novel TNBC therapeutic strategy. Simultaneously targeting PDL1 and LDHA, which would combine immunotherapy and metabolically targeted treatments, might shed some light on the treatment of breast cancer, especially TNBC.
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页数:12
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共 38 条
  • [1] Tumor antigen-specific CD8 T cells infiltrating the tumor express high levels of PD-1 and are functionally impaired
    Ahmadzadeh, Mojgan
    Johnson, Laura A.
    Heemskerk, Bianca
    Wunderlich, John R.
    Dudley, Mark E.
    White, Donald E.
    Rosenberg, Steven A.
    [J]. BLOOD, 2009, 114 (08) : 1537 - 1544
  • [2] Identification of LDH-A as a therapeutic target for cancer cell killing via (i) p53/NAD(H)-dependent and (ii) p53-independent pathways
    Allison, S. J.
    Knight, J. R. P.
    Granchi, C.
    Rani, R.
    Minutolo, F.
    Milner, J.
    Phillips, R. M.
    [J]. ONCOGENESIS, 2014, 3 : e102 - e102
  • [3] B7-H1 is a ubiquitous antiapoptotic receptor on cancer cells
    Azuma, Takeshi
    Yao, Sheng
    Zhu, Gefeng
    Flies, Andrew S.
    Flies, Sarah J.
    Chen, Lieping
    [J]. BLOOD, 2008, 111 (07) : 3635 - 3643
  • [4] LDHA-Associated Lactic Acid Production Blunts Tumor Immunosurveillance by T and NK Cells
    Brand, Almut
    Singer, Katrin
    Koehl, Gudrun E.
    Kolitzus, Marlene
    Schoenhammer, Gabriele
    Thiel, Annette
    Matos, Carina
    Bruss, Christina
    Klobuch, Sebastian
    Peter, Katrin
    Kastenberger, Michael
    Bogdan, Christian
    Schleicher, Ulrike
    Mackensen, Andreas
    Ullrich, Evelyn
    Fichtner-Feigl, Stefan
    Kesselring, Rebecca
    Mack, Matthias
    Ritter, Uwe
    Schmid, Maximilian
    Blank, Christian
    Dettmer, Katja
    Oefner, Peter J.
    Hoffmann, Petra
    Walenta, Stefan
    Geissler, Edward K.
    Pouyssegur, Jacques
    Villunger, Andreas
    Steven, Andre
    Seliger, Barbara
    Schreml, Stephan
    Haferkamp, Sebastian
    Kohl, Elisabeth
    Karrer, Sigrid
    Berneburg, Mark
    Herr, Wolfgang
    Mueller-Klieser, Wolfgang
    Renner, Kathrin
    Kreutz, Marina
    [J]. Cell Metabolism, 2016, 24 (05) : 657 - 671
  • [5] Metabolic Competition in the Tumor Microenvironment Is a Driver of Cancer Progression
    Chang, Chih-Hao
    Qiu, Jing
    O'Sullivan, David
    Buck, Michael D.
    Noguchi, Takuro
    Curtis, Jonathan D.
    Chen, Qiongyu
    Gindin, Mariel
    Gubin, Matthew M.
    van der Windt, Gerritje J. W.
    Tonc, Elena
    Schreiber, Robert D.
    Pearce, Edward J.
    Pearce, Erika L.
    [J]. CELL, 2015, 162 (06) : 1229 - 1241
  • [6] Tumor-Intrinsic PD-L1 Signals Regulate Cell Growth, Pathogenesis, and Autophagy in Ovarian Cancer and Melanoma
    Clark, Curtis A.
    Gupta, Harshita B.
    Sareddy, Gangadhara
    Pandeswara, Srilakshmi
    Lao, Shunhua
    Yuan, Bin
    Drerup, Justin M.
    Padron, Alvaro
    Conejo-Garcia, Jose
    Murthy, Kruthi
    Liu, Yang
    Turk, Mary Jo
    Thedieck, Kathrin
    Hurez, Vincent
    Li, Rong
    Vadlamudi, Ratna
    Curiel, Tyler J.
    [J]. CANCER RESEARCH, 2016, 76 (23) : 6964 - 6974
  • [7] PDL1 Regulation by p53 via miR-34
    Cortez, Maria Angelica
    Ivan, Cristina
    Valdecanas, David
    Wang, Xiaohong
    Peltier, Heidi J.
    Ye, Yuping
    Araujo, Luiz
    Carbone, David P.
    Shilo, Konstantin
    Giri, Dipak K.
    Kelnar, Kevin
    Martin, Desiree
    Komaki, Ritsuko
    Gomez, Daniel R.
    Krishnan, Sunil
    Calin, George A.
    Bader, Andreas G.
    Welsh, James W.
    [J]. JNCI-JOURNAL OF THE NATIONAL CANCER INSTITUTE, 2016, 108 (01):
  • [8] Dong HD, 2002, NAT MED, V8, P793, DOI 10.1038/nm730
  • [9] PD-L1 regulates the development, maintenance, and function of induced regulatory T cells
    Francisco, Loise M.
    Salinas, Victor H.
    Brown, Keturah E.
    Vanguri, Vijay K.
    Freeman, Gordon J.
    Kuchroo, Vijay K.
    Sharpe, Arlene H.
    [J]. JOURNAL OF EXPERIMENTAL MEDICINE, 2009, 206 (13) : 3015 - 3029
  • [10] Hallmarks of Cancer: The Next Generation
    Hanahan, Douglas
    Weinberg, Robert A.
    [J]. CELL, 2011, 144 (05) : 646 - 674