Autophagy Contributes to Metabolic Reprogramming and Therapeutic Resistance in Pancreatic Tumors

被引:24
作者
Reyes-Castellanos, Gabriela [1 ]
Abdel Hadi, Nadine [1 ]
Carrier, Alice [1 ]
机构
[1] Aix Marseille Univ, CNRS, Inst Paoli Calmettes, INSERM,Ctr Rech Cancerol Marseille CRCM, F-13009 Marseille, France
关键词
pancreatic ductal adenocarcinoma; autophagy; cancer metabolism; mitochondrial metabolism; therapeutic resistance; CANCER-CELLS; OXIDATIVE STRESS; PROMOTES GROWTH; STELLATE CELLS; GEMCITABINE; PROGRESSION; INHIBITION; P53; FOLFIRINOX; EXPRESSION;
D O I
10.3390/cells11030426
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Metabolic reprogramming is a feature of cancers for which recent research has been particularly active, providing numerous insights into the mechanisms involved. It occurs across the entire cancer process, from development to resistance to therapies. Established tumors exhibit dependencies for metabolic pathways, constituting vulnerabilities that can be targeted in the clinic. This knowledge is of particular importance for cancers that are refractory to any therapeutic approach, such as Pancreatic Ductal Adenocarcinoma (PDAC). One of the metabolic pathways dysregulated in PDAC is autophagy, a survival process that feeds the tumor with recycled intracellular components, through both cell-autonomous (in tumor cells) and nonautonomous (from the local and distant environment) mechanisms. Autophagy is elevated in established PDAC tumors, contributing to aberrant proliferation and growth even in a nutrient-poor context. Critical elements link autophagy to PDAC including genetic alterations, mitochondrial metabolism, the tumor microenvironment (TME), and the immune system. Moreover, high autophagic activity in PDAC is markedly related to resistance to current therapies. In this context, combining autophagy inhibition with standard chemotherapy, and/or drugs targeting other vulnerabilities such as metabolic pathways or the immune response, is an ongoing clinical strategy for which there is still much to do through translational and multidisciplinary research.
引用
收藏
页数:19
相关论文
共 121 条
[1]   Targeting Redox Metabolism in Pancreatic Cancer [J].
Abdel Hadi, Nadine ;
Reyes-Castellanos, Gabriela ;
Carrier, Alice .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (04) :1-14
[2]   Intrinsic chemoresistance to gemcitabine is associated with decreased expression of BNIP3 in pancreatic cancer [J].
Akada, M ;
Crnogorac-Jurcevic, T ;
Lattimore, S ;
Mahon, P ;
Lopes, R ;
Sunamura, M ;
Matsuno, S ;
Lemoine, NR .
CLINICAL CANCER RESEARCH, 2005, 11 (08) :3094-3101
[3]   Oxidative Stress Induced by Inactivation of TP53INP1 Cooperates with KrasG12D to Initiate and Promote Pancreatic Carcinogenesis in the Murine Pancreas [J].
Al Saati, Talal ;
Clerc, Pascal ;
Hanoun, Naima ;
Peuget, Sylvain ;
Lulka, Hubert ;
Gigoux, Veronique ;
Capilla, Florence ;
Beluchon, Benoit ;
Couvelard, Anne ;
Selves, Janick ;
Buscail, Louis ;
Carrier, Alice ;
Dusetti, Nelson ;
Dufresne, Marlene .
AMERICAN JOURNAL OF PATHOLOGY, 2013, 182 (06) :1996-2004
[4]   Targeting Autophagy in Cancer: Recent Advances and Future Directions [J].
Amaravadi, Ravi K. ;
Kimmelman, Alec C. ;
Debnath, Jayanta .
CANCER DISCOVERY, 2019, 9 (09) :1167-1181
[5]   Basal autophagy maintains pancreatic acinar cell homeostasis and protein synthesis and prevents ER stress [J].
Antonucci, Laura ;
Fagman, Johan B. ;
Kim, Ju Youn ;
Todoric, Jelena ;
Gukovsky, Ilya ;
Mackey, Mason ;
Ellisman, Mark H. ;
Karin, Michael .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (45) :E6166-E6174
[6]   Autophagy is induced in the skeletal muscle of cachectic cancer patients [J].
Aversa, Zaira ;
Pin, Fabrizio ;
Lucia, Simone ;
Penna, Fabio ;
Verzaro, Roberto ;
Fazi, Maurizio ;
Colasante, Giuseppina ;
Tirone, Andrea ;
Fanelli, Filippo Rossi ;
Ramaccini, Cesarina ;
Costelli, Paola ;
Muscaritoli, Maurizio .
SCIENTIFIC REPORTS, 2016, 6
[7]   Genomic analyses identify molecular subtypes of pancreatic cancer [J].
Bailey, Peter ;
Chang, David K. ;
Nones, Katia ;
Johns, Amber L. ;
Patch, Ann-Marie ;
Gingras, Marie-Claude ;
Miller, David K. ;
Christ, Angelika N. ;
Bruxner, Tim J. C. ;
Quinn, Michael C. ;
Nourse, Craig ;
Murtaugh, L. Charles ;
Harliwong, Ivon ;
Idrisoglu, Senel ;
Manning, Suzanne ;
Nourbakhsh, Ehsan ;
Wani, Shivangi ;
Fink, Lynn ;
Holmes, Oliver ;
Chin, Vencssa ;
Anderson, Matthew J. ;
Kazakoff, Stephen ;
Leonard, Conrad ;
Newell, Felicity ;
Waddell, Nick ;
Wood, Scott ;
Xu, Qinying ;
Wilson, Peter J. ;
Cloonan, Nicole ;
Kassahn, Karin S. ;
Taylor, Darrin ;
Quek, Kelly ;
Robertson, Alan ;
Pantano, Lorena ;
Mincarelli, Laura ;
Sanchez, Luis N. ;
Evers, Lisa ;
Wu, Jianmin ;
Pinese, Mark ;
Cowley, Mark J. ;
Jones, Marc D. ;
Colvin, Emily K. ;
Nagrial, Adnan M. ;
Humphrey, Emily S. ;
Chantrill, Lorraine A. ;
Mawson, Amanda ;
Humphris, Jeremy ;
Chou, Angela ;
Pajic, Marina ;
Scarlett, Christopher J. .
NATURE, 2016, 531 (7592) :47-+
[8]   The biological underpinnings of therapeutic resistance in pancreatic cancer [J].
Beatty, Gregory L. ;
Werba, Gregor ;
Lyssiotis, Costas A. ;
Simeone, Diane M. .
GENES & DEVELOPMENT, 2021, 35 (13-14) :940-+
[9]   Safety and Biologic Response of Pre-operative Autophagy Inhibition in Combination with Gemcitabine in Patients with Pancreatic Adenocarcinoma [J].
Boone, Brian A. ;
Bahary, Nathan ;
Zureikat, Amer H. ;
Moser, A. James ;
Normolle, Daniel P. ;
Wu, Wen-Chi ;
Singhi, Aatur D. ;
Bao, Phillip ;
Bartlett, David L. ;
Liotta, Lance A. ;
Espina, Virginia ;
Loughran, Patricia ;
Lotze, Michael T. ;
Zeh, Herbert J., III .
ANNALS OF SURGICAL ONCOLOGY, 2015, 22 (13) :4402-4410
[10]   Autophagy regulates fatty acid availability for oxidative phosphorylation through mitochondria-endoplasmic reticulum contact sites [J].
Bosc, Claudie ;
Broin, Nicolas ;
Fanjul, Marjorie ;
Saland, Estelle ;
Farge, Thomas ;
Courdy, Charly ;
Batut, Aurelie ;
Masoud, Rawand ;
Larrue, Clement ;
Skuli, Sarah ;
Espagnolle, Nicolas ;
Pages, Jean-Christophe ;
Carrier, Alice ;
Bost, Frederic ;
Bertrand-Michel, Justine ;
Tamburini, Jerome ;
Recher, Christian ;
Bertoli, Sarah ;
Mansat-De Mas, Veronique ;
Manenti, Stephane ;
Sarry, Jean-Emmanuel ;
Joffre, Carine .
NATURE COMMUNICATIONS, 2020, 11 (01)