TY - JOUR
T1 - Chronic myeloid leukemia stem cells display alterations in expression of genes involved in oxidative phosphorylation
AU - Flis, Krzysztof
AU - Irvine, David
AU - Copland, Mhairi
AU - Bhatia, Ravi
AU - Skorski, Tomasz
PY - 2012/12
Y1 - 2012/12
N2 - The mitochondrial respiratory chain (MRC) consists of protein complexes I, II, III, IV and V that support oxidative phosphorylation (OXPHOS), which depends on electron transport to generate adenosine triphosphate (ATP). Electron leakage from the MRC generates reactive oxygen species (ROS). Chronic myeloid leukemia in chronic phase (CML-CP) stem cells (LSCs) produce high levels of mitochondrial ROS, causing oxidative DNA damage, resulting in genomic instability, generating imatinib-resistant BCRABL1 kinase mutants and additional chromosomal aberrations. Using global mRNA microarray analysis combined with Ingenuity Pathway Analysis we found that LSCs display enhanced expression of genes encoding MRC complexes I, II, IV and V. However, expression of genes encoding complex III was deregulated. Treatment with imatinib did not correct the aberrant levels of MRC genes. Therefore we postulate that abnormal expression of MRC genes may facilitate electron leakage to promote the production of ROS and accumulation of genomic instability in LSCs in imatinib-naive and imatinib-treated patients.
AB - The mitochondrial respiratory chain (MRC) consists of protein complexes I, II, III, IV and V that support oxidative phosphorylation (OXPHOS), which depends on electron transport to generate adenosine triphosphate (ATP). Electron leakage from the MRC generates reactive oxygen species (ROS). Chronic myeloid leukemia in chronic phase (CML-CP) stem cells (LSCs) produce high levels of mitochondrial ROS, causing oxidative DNA damage, resulting in genomic instability, generating imatinib-resistant BCRABL1 kinase mutants and additional chromosomal aberrations. Using global mRNA microarray analysis combined with Ingenuity Pathway Analysis we found that LSCs display enhanced expression of genes encoding MRC complexes I, II, IV and V. However, expression of genes encoding complex III was deregulated. Treatment with imatinib did not correct the aberrant levels of MRC genes. Therefore we postulate that abnormal expression of MRC genes may facilitate electron leakage to promote the production of ROS and accumulation of genomic instability in LSCs in imatinib-naive and imatinib-treated patients.
KW - CML leukemia stem cells
KW - Microarray analysis
KW - Oxidative phosphorylation
UR - http://www.scopus.com/inward/record.url?scp=84868338894&partnerID=8YFLogxK
U2 - 10.3109/10428194.2012.696313
DO - 10.3109/10428194.2012.696313
M3 - Article
C2 - 22616753
SN - 1042-8194
VL - 53
SP - 2474
EP - 2478
JO - Leukemia and Lymphoma
JF - Leukemia and Lymphoma
IS - 12
ER -