PCK1 regulates neuroendocrine differentiation in a positive feedback loop of LIF/ZBTB46 signalling in castration-resistant prostate cancer

被引:9
作者
Wen, Yu-Ching [1 ,2 ,3 ]
Liu, Chien-Liang [4 ]
Yeh, Hsiu-Lien [5 ]
Chen, Wei-Hao [6 ]
Jiang, Kuo-Ching [6 ]
Tram, Van Thi Ngoc [6 ]
Hsiao, Michael [7 ]
Huang, Jiaoti [8 ]
Chen, Wei-Yu [9 ,10 ]
Liu, Yen-Nien [6 ]
机构
[1] Taipei Med Univ, Wan Fang Hosp, Dept Urol, Taipei, Taiwan
[2] Taipei Med Univ, Coll Med, Sch Med, Dept Urol, Taipei, Taiwan
[3] Taipei Med Univ, TMU Res Ctr Urol & Kidney, Taipei, Taiwan
[4] Chi Mei Med Ctr, Dept Surg, Div Urol, Tainan, Taiwan
[5] Hsin Sheng Jr Coll Med Care & Management, Gen Educ Dev Ctr, Taoyuan, Taiwan
[6] Taipei Med Univ, Coll Med Sci & Technol, Grad Inst Canc Biol & Drug Discovery, Taipei, Taiwan
[7] Acad Sinica, Genom Res Ctr, Taipei, Taiwan
[8] Duke Univ, Med Ctr, Dept Pathol, Durham, NC 27710 USA
[9] Taipei Med Univ, Wan Fang Hosp, Dept Pathol, Taipei, Taiwan
[10] Taipei Med Univ, Coll Med, Sch Med, Dept Pathol, Taipei, Taiwan
关键词
ANDROGEN RECEPTOR; CELLS; INHIBITION; GENES;
D O I
10.1038/s41416-021-01631-3
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background Castration-resistant prostate cancer (CRPC) patients frequently develop neuroendocrine differentiation, with high mortality and no effective treatment. However, the regulatory mechanism that connects neuroendocrine differentiation and metabolic adaptation in response to therapeutic resistance of prostate cancer remain to be unravelled. Methods By unbiased cross-correlation between RNA-sequencing, database signatures, and ChIP analysis, combining in vitro cell lines and in vivo animal models, we identified that PCK1 is a pivotal regulator in therapy-induced neuroendocrine differentiation of prostate cancer through a LIF/ZBTB46-driven glucose metabolism pathway. Results Upregulation of PCK1 supports cell proliferation and reciprocally increases ZBTB46 levels to promote the expression of neuroendocrine markers that are conducive to the development of neuroendocrine characteristic CRPC. PCK1 and neuroendocrine marker expressions are regulated by the ZBTB46 transcription factor upon activation of LIF signalling. Targeting PCK1 can reduce the neuroendocrine phenotype and decrease the growth of prostate cancer cells in vitro and in vivo. Conclusion Our study uncovers LIF/ZBTB46 signalling activation as a key mechanism for upregulating PCK1-driven glucose metabolism and neuroendocrine differentiation of CRPC, which may yield significant improvements in prostate cancer treatment after ADT using PCK1 inhibitors.
引用
收藏
页码:778 / 790
页数:13
相关论文
共 40 条
[1]   The Molecular Taxonomy of Primary Prostate Cancer [J].
Abeshouse, Adam ;
Ahn, Jaeil ;
Akbani, Rehan ;
Ally, Adrian ;
Amin, Samirkumar ;
Andry, Christopher D. ;
Annala, Matti ;
Aprikian, Armen ;
Armenia, Joshua ;
Arora, Arshi ;
Auman, J. Todd ;
Balasundaram, Miruna ;
Balu, Saianand ;
Barbieri, Christopher E. ;
Bauer, Thomas ;
Benz, Christopher C. ;
Bergeron, Alain ;
Beroukhim, Rameen ;
Berrios, Mario ;
Bivol, Adrian ;
Bodenheimer, Tom ;
Boice, Lori ;
Bootwalla, Moiz S. ;
dos Reis, Rodolfo Borges ;
Boutros, Paul C. ;
Bowen, Jay ;
Bowlby, Reanne ;
Boyd, Jeffrey ;
Bradley, Robert K. ;
Breggia, Anne ;
Brimo, Fadi ;
Bristow, Christopher A. ;
Brooks, Denise ;
Broom, Bradley M. ;
Bryce, Alan H. ;
Bubley, Glenn ;
Burks, Eric ;
Butterfield, Yaron S. N. ;
Button, Michael ;
Canes, David ;
Carlotti, Carlos G. ;
Carlsen, Rebecca ;
Carmel, Michel ;
Carroll, Peter R. ;
Carter, Scott L. ;
Cartun, Richard ;
Carver, Brett S. ;
Chan, June M. ;
Chang, Matthew T. ;
Chen, Yu .
CELL, 2015, 163 (04) :1011-1025
[2]   Clinical and Genomic Characterization of Treatment-Emergent Small-Cell Neuroendocrine Prostate Cancer: A Multi-institutional Prospective Study [J].
Aggarwal, Rahul ;
Huang, Jiaoti ;
Alumkal, Joshi J. ;
Zhang, Li ;
Feng, Felix Y. ;
Thomas, George V. ;
Weinstein, Alana S. ;
Friedl, Verena ;
Zhang, Can ;
Witte, Owen N. ;
Lloyd, Paul ;
Gleave, Martin ;
Evans, Christopher P. ;
Youngren, Jack ;
Beer, Tomasz M. ;
Rettig, Matthew ;
Wong, Christopher K. ;
True, Lawrence ;
Foye, Adam ;
Playdle, Denise ;
Ryan, Charles J. ;
Lara, Primo ;
Chi, Kim N. ;
Uzunangelov, Vlado ;
Sokolov, Artem ;
Newton, Yulia ;
Beltran, Himisha ;
Demichelis, Francesca ;
Rubin, Mark A. ;
Stuart, Joshua M. ;
Small, Eric J. .
JOURNAL OF CLINICAL ONCOLOGY, 2018, 36 (24) :2492-+
[3]   Divergent clonal evolution of castration-resistant neuroendocrine prostate cancer [J].
Beltran, Himisha ;
Prandi, Davide ;
Mosquera, Juan Miguel ;
Benelli, Matteo ;
Puca, Loredana ;
Cyrta, Joanna ;
Marotz, Clarisse ;
Giannopoulou, Eugenia ;
Chakravarthi, Balabhadrapatruni V. S. K. ;
Varambally, Sooryanarayana ;
Tomlins, Scott A. ;
Nanus, David M. ;
Tagawa, Scott T. ;
Van Allen, Eliezer M. ;
Elemento, Olivier ;
Sboner, Andrea ;
Garraway, Levi A. ;
Rubin, Mark A. ;
Demichelis, Francesca .
NATURE MEDICINE, 2016, 22 (03) :298-305
[4]   Nilotinib: A Novel, Selective Tyrosine Kinase Inhibitor [J].
Blay, Jean-Yves ;
von Mehren, Margaret .
SEMINARS IN ONCOLOGY, 2011, 38 (02) :S3-S9
[5]   Inhibition of the androgen receptor induces a novel tumor promoter, ZBTB46, for prostate cancer metastasis [J].
Chen, W-Y ;
Tsai, Y-C ;
Siu, M. K. ;
Yeh, H-L ;
Chen, C-L ;
Yin, J. J. ;
Huang, J. ;
Liu, Y-N .
ONCOGENE, 2017, 36 (45) :6213-6224
[6]   Dissecting the Unique Role of the Retinoblastoma Tumor Suppressor during Cellular Senescence [J].
Chicas, Agustin ;
Wang, Xiaowo ;
Zhang, Chaolin ;
McCurrach, Mile ;
Zhao, Zhen ;
Mert, Ozlem ;
Dickins, Ross A. ;
Narita, Masashi ;
Zhang, Michael ;
Lowe, Scott W. .
CANCER CELL, 2010, 17 (04) :376-387
[7]   Clinical features of neuroendocrine prostate cancer [J].
Conteduca, Vincenza ;
Oromendia, Clara ;
Eng, Kenneth W. ;
Bareja, Rohan ;
Sigouros, Michael ;
Molina, Ana ;
Faltas, Bishoy M. ;
Sboner, Andrea ;
Mosquera, Juan Miguel ;
Elemento, Olivier ;
Nanus, David M. ;
Tagawa, Scott T. ;
Ballman, Karla V. ;
Beltran, Himisha .
EUROPEAN JOURNAL OF CANCER, 2019, 121 :7-18
[8]   Androgen Signaling in Prostate Cancer [J].
Dai, Charles ;
Heemers, Hannelore ;
Sharifi, Nima .
COLD SPRING HARBOR PERSPECTIVES IN MEDICINE, 2017, 7 (09)
[9]   Dissection of a DNA-damage-induced transcriptional network using a combination of microarrays, RNA interference and computational promoter analysis [J].
Elkon, R ;
Rashi-Elkeles, S ;
Lerenthal, Y ;
Linhart, C ;
Tenne, T ;
Amariglio, N ;
Rechavi, G ;
Shamir, R ;
Shiloh, Y .
GENOME BIOLOGY, 2005, 6 (05)
[10]   Metabolic sequelae associated with androgen deprivation therapy for prostate cancer [J].
Faris, Jason E. ;
Smith, Matthew R. .
CURRENT OPINION IN ENDOCRINOLOGY DIABETES AND OBESITY, 2010, 17 (03) :240-246