BCR-ABL enhances differentiation of long-term repopulating hematopoietic stem cells. 2010

Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
Department of Medicine, Hematology and Oncology, University of Münster, Münster, Germany.

In a previously developed inducible transgenic mouse model of chronic myeloid leukemia, we now demonstrate that the disease is transplantable using BCR-ABL(+) Lin(-)Sca-1(+)c-kit(+) (LSK) cells. Interestingly, the phenotype is more severe when unfractionated bone marrow cells are transplanted, yet neither progenitor cells (Lin(-)Sca-1(-)c-kit(+)), nor mature granulocytes (CD11b(+)Gr-1(+)), nor potential stem cell niche cells (CD45(-)Ter119(-)) are able to transmit the disease or alter the phenotype. The phenotype is largely independent of BCR-ABL priming before transplantation. However, prolonged BCR-ABL expression abrogates the potential of LSK cells to induce full-blown disease in secondary recipients and increases the fraction of multipotent progenitor cells at the expense of long-term hematopoietic stem cells (LT-HSCs) in the bone marrow. BCR-ABL alters the expression of genes involved in proliferation, survival, and hematopoietic development, probably contributing to the reduced LT-HSC frequency within BCR-ABL(+) LSK cells. Reversion of BCR-ABL, or treatment with imatinib, eradicates mature cells, whereas leukemic stem cells persist, giving rise to relapsed chronic myeloid leukemia on reinduction of BCR-ABL, or imatinib withdrawal. Our results suggest that BCR-ABL induces differentiation of LT-HSCs and decreases their self-renewal capacity.

UI MeSH Term Description Entries
D008822 Mice, Transgenic Laboratory mice that have been produced from a genetically manipulated EGG or EMBRYO, MAMMALIAN. Transgenic Mice,Founder Mice, Transgenic,Mouse, Founder, Transgenic,Mouse, Transgenic,Mice, Transgenic Founder,Transgenic Founder Mice,Transgenic Mouse
D009367 Neoplasm Staging Methods which attempt to express in replicable terms the extent of the neoplasm in the patient. Cancer Staging,Staging, Neoplasm,Tumor Staging,TNM Classification,TNM Staging,TNM Staging System,Classification, TNM,Classifications, TNM,Staging System, TNM,Staging Systems, TNM,Staging, Cancer,Staging, TNM,Staging, Tumor,System, TNM Staging,Systems, TNM Staging,TNM Classifications,TNM Staging Systems
D009368 Neoplasm Transplantation Experimental transplantation of neoplasms in laboratory animals for research purposes. Transplantation, Neoplasm,Neoplasm Transplantations,Transplantations, Neoplasm
D002454 Cell Differentiation Progressive restriction of the developmental potential and increasing specialization of function that leads to the formation of specialized cells, tissues, and organs. Differentiation, Cell,Cell Differentiations,Differentiations, Cell
D002469 Cell Separation Techniques for separating distinct populations of cells. Cell Isolation,Cell Segregation,Isolation, Cell,Cell Isolations,Cell Segregations,Cell Separations,Isolations, Cell,Segregation, Cell,Segregations, Cell,Separation, Cell,Separations, Cell
D002471 Cell Transformation, Neoplastic Cell changes manifested by escape from control mechanisms, increased growth potential, alterations in the cell surface, karyotypic abnormalities, morphological and biochemical deviations from the norm, and other attributes conferring the ability to invade, metastasize, and kill. Neoplastic Transformation, Cell,Neoplastic Cell Transformation,Transformation, Neoplastic Cell,Tumorigenic Transformation,Cell Neoplastic Transformation,Cell Neoplastic Transformations,Cell Transformations, Neoplastic,Neoplastic Cell Transformations,Neoplastic Transformations, Cell,Transformation, Cell Neoplastic,Transformation, Tumorigenic,Transformations, Cell Neoplastic,Transformations, Neoplastic Cell,Transformations, Tumorigenic,Tumorigenic Transformations
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D005434 Flow Cytometry Technique using an instrument system for making, processing, and displaying one or more measurements on individual cells obtained from a cell suspension. Cells are usually stained with one or more fluorescent dyes specific to cell components of interest, e.g., DNA, and fluorescence of each cell is measured as it rapidly transverses the excitation beam (laser or mercury arc lamp). Fluorescence provides a quantitative measure of various biochemical and biophysical properties of the cell, as well as a basis for cell sorting. Other measurable optical parameters include light absorption and light scattering, the latter being applicable to the measurement of cell size, shape, density, granularity, and stain uptake. Cytofluorometry, Flow,Cytometry, Flow,Flow Microfluorimetry,Fluorescence-Activated Cell Sorting,Microfluorometry, Flow,Cell Sorting, Fluorescence-Activated,Cell Sortings, Fluorescence-Activated,Cytofluorometries, Flow,Cytometries, Flow,Flow Cytofluorometries,Flow Cytofluorometry,Flow Cytometries,Flow Microfluorometries,Flow Microfluorometry,Fluorescence Activated Cell Sorting,Fluorescence-Activated Cell Sortings,Microfluorimetry, Flow,Microfluorometries, Flow,Sorting, Fluorescence-Activated Cell,Sortings, Fluorescence-Activated Cell
D006412 Hematopoietic Stem Cells Progenitor cells from which all blood cells derived. They are found primarily in the bone marrow and also in small numbers in the peripheral blood. Colony-Forming Units, Hematopoietic,Progenitor Cells, Hematopoietic,Stem Cells, Hematopoietic,Hematopoietic Progenitor Cells,Cell, Hematopoietic Progenitor,Cell, Hematopoietic Stem,Cells, Hematopoietic Progenitor,Cells, Hematopoietic Stem,Colony Forming Units, Hematopoietic,Colony-Forming Unit, Hematopoietic,Hematopoietic Colony-Forming Unit,Hematopoietic Colony-Forming Units,Hematopoietic Progenitor Cell,Hematopoietic Stem Cell,Progenitor Cell, Hematopoietic,Stem Cell, Hematopoietic,Unit, Hematopoietic Colony-Forming,Units, Hematopoietic Colony-Forming
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
January 2008, Biochemical and biophysical research communications,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
August 2003, Journal of virology,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
January 2000, Blood,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
April 2002, Blood,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
January 2015, Molecular therapy : the journal of the American Society of Gene Therapy,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
April 2016, Annals of the New York Academy of Sciences,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
July 1994, Blood,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
July 1994, Blood,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
April 2015, Molecular therapy : the journal of the American Society of Gene Therapy,
Mirle Schemionek, and Christian Elling, and Ulrich Steidl, and Nicole Bäumer, and Ashley Hamilton, and Tilmann Spieker, and Joachim R Göthert, and Martin Stehling, and Amy Wagers, and Claudia S Huettner, and Daniel G Tenen, and Lara Tickenbrock, and Wolfgang E Berdel, and Hubert Serve, and Tessa L Holyoake, and Carsten Müller-Tidow, and Steffen Koschmieder
May 2006, Blood,
Copied contents to your clipboard!