A ‘telomere-associated secretory phenotype’ cooperates with BCR-ABL to drive malignant proliferation of leukemic cells

被引:0
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作者
M Braig
N Pällmann
M Preukschas
D Steinemann
W Hofmann
A Gompf
T Streichert
T Braunschweig
M Copland
K L Rudolph
C Bokemeyer
S Koschmieder
A Schuppert
S Balabanov
T H Brümmendorf
机构
[1] Hubertus Wald Tumor-Zentrum,Department of Oncology/Hematology and Bone Marrow Transplantation with Section of Pneumology
[2] University Hospital Hamburg-Eppendorf,Division of Hematology
[3] University Hospital Zürich,Department of Pathology
[4] Institute of Cell and Molecular Pathology,Department of Hematology and Oncology
[5] Hannover Medical School,undefined
[6] Institute of Molecular Medicine and Max-Planck-Research Group on Stem Cell Aging,undefined
[7] Institute of Clinical Chemistry,undefined
[8] University Hospital Cologne,undefined
[9] University Hospital of the RWTH Aachen,undefined
[10] Paul O’Gorman Leukaemia Research Centre,undefined
[11] College of Medical,undefined
[12] Veterinary and Life Sciences,undefined
[13] Institute of Cancer Sciences,undefined
[14] University of Glasgow,undefined
[15] Leibniz Institute of Age Research – Fritz-Lipmann Institute (FLI),undefined
[16] University Hospital of the RWTH Aachen,undefined
[17] Aachen Institute for Advanced Study in Computational Engineering Science (AICES),undefined
[18] RWTH Aachen University,undefined
来源
Leukemia | 2014年 / 28卷
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摘要
Telomere biology is frequently associated with disease evolution in human cancer and dysfunctional telomeres have been demonstrated to contribute to genetic instability. In BCR-ABL+ chronic myeloid leukemia (CML), accelerated telomere shortening has been shown to correlate with leukemia progression, risk score and response to treatment. Here, we demonstrate that proliferation of murine CML-like bone marrow cells strongly depends on telomere maintenance. CML-like cells of telomerase knockout mice with critically short telomeres (CML-iG4) are growth retarded and proliferation is terminally stalled by a robust senescent cell cycle arrest. In sharp contrast, CML-like cells with pre-shortened, but not critically short telomere lengths (CML-G2) grew most rapidly and were found to express a specific ‘telomere-associated secretory phenotype’, comprising secretion of chemokines, interleukins and other growth factors, thereby potentiating oncogene-driven growth. Moreover, conditioned supernatant of CML-G2 cells markedly enhanced proliferation of CML-WT and pre-senescent CML-iG4 cells. Strikingly, a similar inflammatory mRNA expression pattern was found with disease progression from chronic phase to accelerated phase in CML patients. These findings demonstrate that telomere-induced senescence needs to be bypassed by leukemic cells in order to progress to blast crisis and provide a novel mechanism by which telomere shortening may contribute to disease evolution in CML.
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页码:2028 / 2039
页数:11
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