Bone Marrow Mesenchymal Stem Cells Support Acute Myeloid Leukemia Bioenergetics and Enhance Antioxidant Defense and Escape from Chemotherapy

被引:147
作者
Forte, Dorian [1 ,3 ,10 ]
Garcia-Fernandez, Maria [1 ,3 ]
Sanchez-Aguilera, Abel [4 ]
Stavropoulou, Vaia [5 ,6 ]
Fielding, Claire [1 ,3 ]
Martin-Perez, Daniel [4 ]
Antonio Lopez, Juan [4 ,7 ]
Costa, Ana S. H. [8 ]
Tronci, Laura [8 ]
Nikitopoulou, Efterpi [8 ]
Barber, Michael [1 ]
Gallipoli, Paolo [1 ,2 ]
Marando, Ludovica [1 ,2 ]
Fernandez de Castillejo, Carlos Lopez [4 ]
Tzankov, Alexandar [9 ]
Dietmann, Sabine [1 ]
Cavo, Michele [10 ,11 ]
Catani, Lucia [10 ,11 ]
Curti, Antonio [11 ]
Vazquez, Jesus [4 ,7 ]
Frezza, Christian [8 ]
Huntly, Brian J. [1 ,2 ]
Schwaller, Juerg [5 ,6 ]
Mendez-Ferrer, Simon [1 ,4 ]
机构
[1] Wellcome MRC Cambridge Stem Cell Inst, Cambridge CB2 0AW, England
[2] Univ Cambridge, Dept Haematol, Cambridge CB2 0AW, England
[3] Natl Hlth Serv Blood & Transplant, Cambridge CB2 0PT, England
[4] Ctr Nacl Invest Cardiovasculares CNIC, Madrid 28029, Spain
[5] Univ Basel, Univ Childrens Hosp, CH-4031 Basel, Switzerland
[6] Univ Basel, Dept Biomed DBM, CH-4031 Basel, Switzerland
[7] CIBER Enfermedades Cardiovasculares CIBERCV, Madrid, Spain
[8] Univ Cambridge, MRC Canc Unit, Cambridge CB2 0XZ, England
[9] Univ Hosp Basel, Inst Pathol, CH-4031 Basel, Switzerland
[10] Univ Bologna, Dipartimento Med Specialist Diagnost & Sperimenta, Ist Ematol Seragnoli, I-40138 Bologna, Italy
[11] Univ Bologna, Azienda Ospedaliero, Via Albertoni 15, I-40138 Bologna, Italy
基金
欧盟地平线“2020”; 英国惠康基金; 英国医学研究理事会; 瑞士国家科学基金会;
关键词
FATTY-ACID OXIDATION; STROMAL CELLS; PEPTIDE IDENTIFICATION; MITOCHONDRIAL TRANSFER; MOUSE MODELS; EXPRESSION; GENE; METABOLISM; INHIBITION; REVEALS;
D O I
10.1016/j.cmet.2020.09.001
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Like normal hematopoietic stem cells, leukemic stem cells depend on their bone marrow (BM) microenvironment for survival, but the underlying mechanisms remain largely unknown. We have studied the contribution of nestin(+) BM mesenchymal stem cells (BMSCs) to MLL-AF9-driven acute myeloid leukemia (AML) development and chemo-resistance in vivo. Unlike bulk stroma, nestin(+) BMSC numbers are not reduced in AML, but their function changestosupportAMLcells, at the expenseofnon-mutatedhematopoieticstemcells (HSCs). Nestin(+) cell depletion delays leukemogenesis in primaryAMLmice and selectively decreases AML, but not normal, cells in chimeric mice. Nestin(+) BMSCs support survival and chemotherapy relapse ofAMLthrough increased oxidative phosphorylation, tricarboxylic acid (TCA) cycle activity, and glutathione (GSH)-mediated antioxidant defense. Therefore, AML cells co-opt energy sources and antioxidant defense mechanisms from BMSCs to survive chemotherapy. CONTEXT AND SIGNIFICANCE Several lines of evidence indicate that themicroenvironment plays a key role in leukemia development, chemoresistance, and, more recently, resistance to immunotherapy. Therefore, dissecting and targeting niche-driven mechanisms of resistance might provide key adjuvant therapies to eradicate leukemia. This study shows that BMSCs expressing the marker nestin directly support leukemia stem cell (LSC) survival and chemoresistance. Nestin(+) BMSCs increase energy production in LSCs through increased TCA cycle and oxidative phosphorylation (OXPHOS) and simultaneously provide LSCs with key antioxidant tools necessary to balance ROS levels during leukemogenesis and chemotherapy. GSH-dependent antioxidant pathways emerge as key players in the BMSC-LSC crosstalk and represent potential targets for adjuvant therapies in AML.
引用
收藏
页码:829 / +
页数:24
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