Targeting autophagy to fight hematopoietic malignancies

被引:74
作者
Puissant, Alexandre [1 ]
Robert, Guillaume [1 ]
Auberger, Patrick [1 ]
机构
[1] Hop Archet, CHU, Batiment Univ ARCHIMED, INSERM,U895, Nice, France
关键词
leukemia; apoptosis; autophagy; AMPK/mTOR; p62/SQSTM1; resveratrol; acadesine/AICAR; differentiation; hematopoiesis; hematopoietic malignancies; ACTIVATED PROTEIN-KINASE; APOPTOTIC CELL-DEATH; KAPPA-B ACTIVATION; CANCER-CELLS; MITOCHONDRIAL CLEARANCE; INTERACTING PROTEIN; CASPASE ACTIVATION; RAD001; EVEROLIMUS; LEUKEMIA; GROWTH;
D O I
10.4161/cc.9.17.13048
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Macroautophagy, referred hereafter to as autophagy is an evolutionary conserved catabolic process for the degradation and recycling of macromolecules, bulk cytoplasm and dammaged organelles. Autophagy is activated under stress conditions induced by nutrient deprivation, hypoxia and drug treatments. Morphologically, autophagic cells are characterized by the accumulation of double membrane cytoplasmic vesicules called autophagosomes that surrounds cytoplasmic proteins and/or organelles. Autophagosomes next fuse with lysosomes to generate autolysosomes, the structures in which the retained constituents are digested before recycling into the cytoplasm. In this context, autophagy promotes cell survival under adverse conditions. In contrast, under certain circumstances autophagic cells may engage a specific mode of cell death called type II cell death or autophagic cell death (ACD). Considering the strategic positionnement of this process at the crossroads of cell death and survival, it is not surprising that defects in autophagy have been linked to a plethora of human diseases, including hematopoietic malignancies. Finally, autophagy induction is repressed by the mammalian target of rapamycin complex 1 (mTORC1) and favored by the adenosine-monophosphate activated-protein kinase (AMPK). In the present review, we focus on the functions of autophagy in normal and malignant hematopoiesis and discuss the opportunity to target the AMPK/mTOR pathways as a new therapeutic strategy to fight hematopoietic malignancies with a special emphasis on Chronic Myelogenous Leukemia (CML).
引用
收藏
页码:3470 / 3478
页数:9
相关论文
共 92 条
[1]   Inhibition of mammalian S6 kinase by resveratrol suppresses autophagy [J].
Armour, Sean M. ;
Baur, Joseph A. ;
Hsieh, Sherry N. ;
Land-Bracha, Abigail ;
Thomas, Sheila M. ;
Sinclair, David A. .
AGING-US, 2009, 1 (06) :515-528
[2]   Targeting autophagy potentiates tyrosine kinase inhibitor-induced cell death in Philadelphia chromosome-positive cells, including primary CML stem cells [J].
Bellodi, Cristian ;
Lidonnici, Maria Rosa ;
Hamilton, Ashley ;
Helgason, G. Vignir ;
Soliera, Angela Rachele ;
Ronchetti, Mattia ;
Galavotti, Sara ;
Young, Kenneth W. ;
Selmi, Tommaso ;
Yacobi, Rinat ;
Van Etten, Richard A. ;
Donato, Nick ;
Hunter, Ann ;
Dinsdale, David ;
Tirro, Elena ;
Vigneri, Paolo ;
Nicotera, Pierluigi ;
Dyer, Martin J. ;
Holyoake, Tessa ;
Salomoni, Paolo ;
Calabretta, Bruno .
JOURNAL OF CLINICAL INVESTIGATION, 2009, 119 (05) :1109-1123
[3]   Bortezomib induces autophagic death in proliferating human endothelial cells [J].
Belloni, Daniela ;
Veschini, Lorenzo ;
Foglieni, Chiara ;
Dell'Antonio, Giacomo ;
Caligaris-Cappio, Federico ;
Ferrarini, Marina ;
Ferrero, Elisabetta .
EXPERIMENTAL CELL RESEARCH, 2010, 316 (06) :1010-1018
[4]   Growth arrest and autophagy are required for salivary gland cell degradation in Drosophila [J].
Berry, Deborah L. ;
Baehrecke, Eric H. .
CELL, 2007, 131 (06) :1137-1148
[5]   p62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death [J].
Bjorkoy, G ;
Lamark, T ;
Brech, A ;
Outzen, H ;
Perander, M ;
Overvatn, A ;
Stenmark, H ;
Johansen, T .
JOURNAL OF CELL BIOLOGY, 2005, 171 (04) :603-614
[6]   Induction of autophagy-dependent necroptosis is required for childhood acute lymphoblastic leukemia cells to overcome glucocorticoid resistance [J].
Bonapace, Laura ;
Bornhauser, Beat C. ;
Schmitz, Maike ;
Cario, Gunnar ;
Ziegler, Urs ;
Niggli, Felix K. ;
Schaefer, Beat W. ;
Schrappe, Martin ;
Stanulla, Martin ;
Bourquin, Jean-Pierre .
JOURNAL OF CLINICAL INVESTIGATION, 2010, 120 (04) :1310-1323
[7]   p53 target genes Sestrin1 and Sestrin2 connect genotoxic stress and mTOR signaling [J].
Budanov, Andrei V. ;
Karin, Michael .
CELL, 2008, 134 (03) :451-460
[8]   Acadesine activates AMPK and induces apoptosis in B-cell chronic lymphocytic leukemia cells but not in T lymphocytes [J].
Campàs, C ;
López, JM ;
Santidrián, AF ;
Barragán, M ;
Bellosillo, B ;
Colomer, D ;
Gil, J .
BLOOD, 2003, 101 (09) :3674-3680
[9]   Targeting autophagy augments the anticancer activity of the histone deacetylase inhibitor SAHA to overcome Bcr-Abl-mediated drug resistance [J].
Carew, Jennifer S. ;
Nawrocki, Steffan T. ;
Kahue, Charissa N. ;
Zhang, Hui ;
Yang, Chunying ;
Chung, Linda ;
Houghton, Janet A. ;
Huang, Peng ;
Giles, Francis J. ;
Cleveland, John L. .
BLOOD, 2007, 110 (01) :313-322
[10]   Targeting the p27 E3 ligase SCFSkp2 results in p27-and Skp2-mediated cell-cycle arrest and activation of autophagy [J].
Chen, Qing ;
Xie, Weilin ;
Kuhn, Deborah J. ;
Voorhees, Peter M. ;
Lopez-Girona, Antonia ;
Mendy, Derek ;
Corral, Laura G. ;
Krenitsky, Veronique Plantevin ;
Xu, Weiming ;
Parseval, Laure Moutouh-de ;
Webb, David R. ;
Mercurio, Frank ;
Nakayama, Keiichi I. ;
Nakayama, Keiko ;
Orlowski, Robert Z. .
BLOOD, 2008, 111 (09) :4690-4699