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Metabolic characterization of imatinib-resistant BCR-ABL T315I chronic myeloid leukemia cells indicates down-regulation of glycolytic pathway and low ROS production.

Authors
 Byung Woong Ko  ;  Jeongsu Han  ;  Jun Young Heo  ;  Yunseon Jang  ;  Soo Jeong Kim  ;  Jungim Kim  ;  Min Joung Lee  ;  Min Jeong Ryu  ;  Ik Chan Song  ;  Young Suk Jo  ;  Gi Ryang Kweon 
Citation
 LEUKEMIA & LYMPHOMA, Vol.57(9) : 2180-2188, 2016 
Journal Title
LEUKEMIA & LYMPHOMA
ISSN
 1042-8194 
Issue Date
2016
MeSH
Antioxidants/metabolism ; Apoptosis/drug effects ; Biomarkers ; Cell Line, Tumor ; Cell Proliferation/drug effects ; Drug Resistance, Neoplasm/genetics ; Energy Metabolism*/genetics ; Fusion Proteins, bcr-abl/genetics* ; Fusion Proteins, bcr-abl/metabolism ; Gene Expression Regulation, Enzymologic ; Gene Expression Regulation, Neoplastic ; Glycolysis ; Humans ; Imatinib Mesylate/pharmacology ; Leukemia, Myelogenous, Chronic, BCR-ABL Positive/diagnosis ; Leukemia, Myelogenous, Chronic, BCR-ABL Positive/drug therapy ; Leukemia, Myelogenous, Chronic, BCR-ABL Positive/genetics* ; Leukemia, Myelogenous, Chronic, BCR-ABL Positive/metabolism* ; Metabolic Networks and Pathways*/genetics ; Mutation* ; Oxidation-Reduction ; Reactive Oxygen Species/metabolism*
Keywords
Chronic myeloid leukemia ; T315I mutant ; glycolysis ; imatinib resistance ; reactive oxygen species
Abstract
Long-term imatinib treatment induces drug-resistant chronic myeloid leukemia (CML) cells harboring T315I gate keeper mutation of breakpoint cluster region (BCR)-ABL oncogenic kinase. However, although cell proliferation is coupled with cellular energy status in CML carcinogenesis, the metabolic characteristics of T315I-mutant CML cells have never been investigated. Here, we analyzed cell proliferation activities and metabolic phenotypes, including cell proliferation, oxygen consumption, lactate production, and redox state in the KBM5 (imatinib-sensitive) and KBM5-T315I (imatinib-resistant) CML cell lines. Interestingly, KBM5-T315I cells showed decreased cell proliferation, lactate production, fatty acid synthesis, ROS production, and down regulation of mRNA expression related to ROS scavengers, such as SOD2, catalase, GCLm, and GPx1. Taken together, our data demonstrate that the lower growth ability of KBM5-T315I CML cells might be related to the decreased expression of glycolysis-related genes and ROS levels, and this will be used to identify therapeutic targets for imatinib resistance in CML.
Full Text
http://www.tandfonline.com/doi/abs/10.3109/10428194.2016.1142086
DOI
10.3109/10428194.2016.1142086
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Internal Medicine (내과학교실) > 1. Journal Papers
Yonsei Authors
Jo, Young Suk(조영석) ORCID logo https://orcid.org/0000-0001-9926-8389
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/147178
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