Targeting PML in triple negative breast cancer elicits growth suppression and senescence

被引:30
作者
Arreal, Leire [1 ]
Piva, Marco [1 ]
Fernandez, Sonia [1 ,2 ]
Revandkar, Ajinkya [3 ,4 ,5 ]
Clerigue, Ariane [1 ]
Villanueva, Josep [2 ,6 ]
Zabala-Letona, Amaia [1 ,2 ]
Pujana, Mikel [1 ]
Astobiza, Ianire [1 ,2 ]
Cortazar, Ana Rosa [1 ,2 ]
Hermanova, Ivana [1 ]
Bozal-Basterra, Laura [1 ]
Arruabarrena-Aristorena, Amaia [1 ]
Crespo, Jana R. [1 ]
Valcarcel-Jimenez, Lorea [1 ]
Zuniga-Garcia, Patricia [1 ]
Canals, Francesc [6 ]
Torrano, Veronica [1 ,2 ,7 ]
Barrio, Rosa [1 ]
Sutherland, James D. [1 ]
Alimonti, Andrea [3 ,4 ,5 ]
Martin-Martin, Natalia [1 ,2 ]
Carracedo, Arkaitz [1 ,2 ,7 ,8 ]
机构
[1] CIC BioGUNE, Derio, Spain
[2] CIBERONC, Derio, Spain
[3] IOR, CH-6500 Bellinzona, Switzerland
[4] Oncol Inst Southern Switzerland IOSI, CH-6500 Bellinzona, Switzerland
[5] Univ Lausanne UNIL, Fac Biol & Med, CH-1011 Lausanne, Switzerland
[6] Vall dHebron Inst Oncol VHIO, Barcelona, Spain
[7] Univ Basque Country UPV EHU, Biochem & Mol Biol Dept, Bilbao, Spain
[8] Basque Fdn Sci, IKERBASQUE, Bilbao, Spain
基金
欧洲研究理事会; 欧盟地平线“2020”;
关键词
FATTY-ACID OXIDATION; INHIBITS CELL-PROLIFERATION; PATHWAY ACTIVATION; THERAPY; P53; P27(KIP1); TUMORS;
D O I
10.1038/s41418-019-0407-5
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oncogene addiction postulates that the survival and growth of certain tumor cells is dependent upon the activity of one oncogene, despite their multiple genetic and epigenetic abnormalities. This phenomenon provides a foundation for molecular targeted therapy and a rationale for oncogene-based stratification. We have previously reported that the Promyelocytic Leukemia protein (PML) is upregulated in triple negative breast cancer (TNBC) and it regulates cancer-initiating cell function, thus suggesting that this protein can be therapeutically targeted in combination with PML-based stratification. However, the effects of PML perturbation on the bulk of tumor cells remained poorly understood. Here we demonstrate that TNBC cells are addicted to the expression of this nuclear protein. PML inhibition led to a remarkable growth arrest combined with features of senescence in vitro and in vivo. Mechanistically, the growth arrest and senescence were associated to a decrease in MYC and PIM1 kinase levels, with the subsequent accumulation of CDKN1B (p27), a trigger of senescence. In line with this notion, we found that PML is associated to the promoter regions of MYC and PIM1, consistent with their direct correlation in breast cancer specimens. Altogether, our results provide a feasible explanation for the functional similarities of MYC, PIM1, and PML in TNBC and encourage further study of PML targeting strategies for the treatment of this breast cancer subtype.
引用
收藏
页码:1186 / 1199
页数:14
相关论文
共 52 条
[1]   p16INK4a-mediated suppression of telomerase in normal and malignant human breast cells [J].
Bazarov, Alexey V. ;
van Sluis, Marjolein ;
Hines, William C. ;
Bassett, Ekaterina ;
Beliveau, Alain ;
Campeau, Eric ;
Mukhopadhyay, Rituparna ;
Lee, Won Jae ;
Melodyev, Sonya ;
Zaslavsky, Yuri ;
Lee, Leonard ;
Rodier, Francis ;
Chicas, Agustin ;
Lowe, Scott W. ;
Benhattar, Jean ;
Ren, Bing ;
Campisi, Judith ;
Yaswen, Paul .
AGING CELL, 2010, 9 (05) :736-746
[2]   Structure, dynamics and functions of promyelocytic leukaemia nuclear bodies [J].
Bernardi, Rosa ;
Pandolfi, Pier Paolo .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2007, 8 (12) :1006-1016
[3]   Deconstructing PML-induced premature senescence [J].
Bischof, O ;
Kirsh, O ;
Pearson, M ;
Itahana, K ;
Pelicci, PG ;
Dejean, A .
EMBO JOURNAL, 2002, 21 (13) :3358-3369
[4]   Genes that mediate breast cancer metastasis to the brain [J].
Bos, Paula D. ;
Zhang, Xiang H. -F. ;
Nadal, Cristina ;
Shu, Weiping ;
Gomis, Roger R. ;
Nguyen, Don X. ;
Minn, Andy J. ;
van de Vijver, Marc J. ;
Gerald, William L. ;
Foekens, John A. ;
Massague, Joan .
NATURE, 2009, 459 (7249) :1005-U137
[5]   PIM1 kinase regulates cell death, tumor growth and chemotherapy response in triple-negative breast cancer [J].
Braso-Maristany, Fara ;
Filosto, Simone ;
Catchpole, Steven ;
Marlow, Rebecca ;
Quist, Jelmar ;
Francesch-Domenech, Erika ;
Plumb, Darren A. ;
Zakka, Leila ;
Gazinska, Patrycja ;
Liccardi, Gianmaria ;
Meier, Pascal ;
Gris-Oliver, Albert ;
Cheang, Maggie Chon U. ;
Perdrix-Rosell, Anna ;
Shafat, Manar ;
Noel, Elodie ;
Patel, Nirmesh ;
McEachern, Kristen ;
Scaltriti, Maurizio ;
Castel, Pau ;
Noor, Farzana ;
Buus, Richard ;
Mathew, Sumi ;
Watkins, Johnathan ;
Serra, Violeta ;
Marra, Pierfrancesco ;
Grigoriadis, Anita ;
Tutt, Andrew N. .
NATURE MEDICINE, 2016, 22 (11) :1303-1313
[6]   Restoration of the tumor suppressor function to mutant p53 by a low-molecular-weight compound [J].
Bykov, VJN ;
Issaeva, N ;
Shilov, A ;
Hultcrantz, M ;
Pugacheva, E ;
Chumakov, P ;
Bergman, J ;
Wiman, KG ;
Selivanova, G .
NATURE MEDICINE, 2002, 8 (03) :282-288
[7]   Inhibition of fatty acid oxidation as a therapy for MYC-overexpressing triple-negative breast cancer [J].
Camarda, Roman ;
Zhou, Alicia Y. ;
Kohnz, Rebecca A. ;
Balakrishnan, Sanjeev ;
Mahieu, Celine ;
Anderton, Brittany ;
Eyob, Henok ;
Kajimura, Shingo ;
Tward, Aaron ;
Krings, Gregor ;
Nomura, Daniel K. ;
Goga, Andrei .
NATURE MEDICINE, 2016, 22 (04) :427-+
[8]  
Carracedo A, 2008, J CLIN INVEST, V118, P3065, DOI [10.1172/jCI34739, 10.1172/JCI34739]
[9]   Cancer metabolism: fatty acid oxidation in the limelight [J].
Carracedo, Arkaitz ;
Cantley, Lewis C. ;
Pandolfi, Pier Paolo .
NATURE REVIEWS CANCER, 2013, 13 (04) :227-232
[10]   A metabolic prosurvival role for PML in breast cancer [J].
Carracedo, Arkaitz ;
Weiss, Dror ;
Leliaert, Amy K. ;
Bhasin, Manoj ;
de Boer, Vincent C. J. ;
Laurent, Gaelle ;
Adams, Andrew C. ;
Sundvall, Maria ;
Song, Su Jung ;
Ito, Keisuke ;
Finley, Lydia S. ;
Egia, Ainara ;
Libermann, Towia ;
Gerhart-Hines, Zachary ;
Puigserver, Pere ;
Haigis, Marcia C. ;
Maratos-Flier, Elefteria ;
Richardson, Andrea L. ;
Schafer, Zachary T. ;
Pandolfi, Pier P. .
JOURNAL OF CLINICAL INVESTIGATION, 2012, 122 (09) :3088-3100