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p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Standard

p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia. / Pierce, A; Owen-Lynch, P J; Spooncer, E et al.
In: Oncogene, Vol. 17, No. 5, 06.08.1998, p. 667-672.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Pierce, A, Owen-Lynch, PJ, Spooncer, E, Dexter, TM & Whetton, AD 1998, 'p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia', Oncogene, vol. 17, no. 5, pp. 667-672. https://doi.org/10.1038/sj.onc.1201969

APA

Pierce, A., Owen-Lynch, P. J., Spooncer, E., Dexter, T. M., & Whetton, A. D. (1998). p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia. Oncogene, 17(5), 667-672. https://doi.org/10.1038/sj.onc.1201969

Vancouver

Pierce A, Owen-Lynch PJ, Spooncer E, Dexter TM, Whetton AD. p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia. Oncogene. 1998 Aug 6;17(5):667-672. doi: 10.1038/sj.onc.1201969

Author

Pierce, A ; Owen-Lynch, P J ; Spooncer, E et al. / p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia. In: Oncogene. 1998 ; Vol. 17, No. 5. pp. 667-672.

Bibtex

@article{95fa6c00a69d4b69ba54b03c9fec5353,
title = "p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia",
abstract = "Chronic myeloid leukaemia (CML) is a clonal disorder of the pluripotent haemopoietic stem cell, the hallmark of which is the constitutively activated Bcr-Abl protein tyrosine kinase. During the initial chronic phase of CML the primitive multipotent leukaemic progenitor cells remain growth factor dependent and are capable of producing terminally differentiated cells. Although the available evidence suggests that Bcr-Abl directly affects signalling pathways involved in controlling the development of primitive haemopoietic progenitors the identification of the specific biological consequences of Bcr-Abl activity in these progenitors has been hampered by the lack of suitable systems modelling CML. By transfecting the multipotent haemopoietic cell line FDCP-Mix with a temperature sensitive mutant of Bcr-Abl we have developed the first working model that mirrors the chronic phase of CML. FDCP-Mix cells expressing Bcr-Abl tyrosine kinase activity remain growth factor dependent and retain their ability to differentiate. Normal neutrophilic cells are formed in response to G-CSF and GM-CSF. In addition, the transfected FDCP-Mix cells grown at the permissive temperature for Bcr-Abl tyrosine kinase activity display enhanced survival and proliferation in low concentrations of growth factor. These findings are consistent with the initial subtle changes seen in CML progenitor cells during the chronic phase and confirm that Bcr-Abl effects are context specific, i.e. they depend on the origin and developmental potential of the transfected cells. This questions the significance of studies in non-haemopoietic and differentiation blocked haemopoietic cells.",
keywords = "Bcr-Abl, chronic myeloid leukaemia , stem cell line",
author = "A Pierce and Owen-Lynch, {P J} and E Spooncer and Dexter, {T M} and Whetton, {A D}",
year = "1998",
month = aug,
day = "6",
doi = "10.1038/sj.onc.1201969",
language = "English",
volume = "17",
pages = "667--672",
journal = "Oncogene",
issn = "0950-9232",
publisher = "Nature Publishing Group",
number = "5",

}

RIS

TY - JOUR

T1 - p210 Bcr-Abl expression in a primitive multipotent haematopoietic cell line models the development of chronic myeloid leukaemia

AU - Pierce, A

AU - Owen-Lynch, P J

AU - Spooncer, E

AU - Dexter, T M

AU - Whetton, A D

PY - 1998/8/6

Y1 - 1998/8/6

N2 - Chronic myeloid leukaemia (CML) is a clonal disorder of the pluripotent haemopoietic stem cell, the hallmark of which is the constitutively activated Bcr-Abl protein tyrosine kinase. During the initial chronic phase of CML the primitive multipotent leukaemic progenitor cells remain growth factor dependent and are capable of producing terminally differentiated cells. Although the available evidence suggests that Bcr-Abl directly affects signalling pathways involved in controlling the development of primitive haemopoietic progenitors the identification of the specific biological consequences of Bcr-Abl activity in these progenitors has been hampered by the lack of suitable systems modelling CML. By transfecting the multipotent haemopoietic cell line FDCP-Mix with a temperature sensitive mutant of Bcr-Abl we have developed the first working model that mirrors the chronic phase of CML. FDCP-Mix cells expressing Bcr-Abl tyrosine kinase activity remain growth factor dependent and retain their ability to differentiate. Normal neutrophilic cells are formed in response to G-CSF and GM-CSF. In addition, the transfected FDCP-Mix cells grown at the permissive temperature for Bcr-Abl tyrosine kinase activity display enhanced survival and proliferation in low concentrations of growth factor. These findings are consistent with the initial subtle changes seen in CML progenitor cells during the chronic phase and confirm that Bcr-Abl effects are context specific, i.e. they depend on the origin and developmental potential of the transfected cells. This questions the significance of studies in non-haemopoietic and differentiation blocked haemopoietic cells.

AB - Chronic myeloid leukaemia (CML) is a clonal disorder of the pluripotent haemopoietic stem cell, the hallmark of which is the constitutively activated Bcr-Abl protein tyrosine kinase. During the initial chronic phase of CML the primitive multipotent leukaemic progenitor cells remain growth factor dependent and are capable of producing terminally differentiated cells. Although the available evidence suggests that Bcr-Abl directly affects signalling pathways involved in controlling the development of primitive haemopoietic progenitors the identification of the specific biological consequences of Bcr-Abl activity in these progenitors has been hampered by the lack of suitable systems modelling CML. By transfecting the multipotent haemopoietic cell line FDCP-Mix with a temperature sensitive mutant of Bcr-Abl we have developed the first working model that mirrors the chronic phase of CML. FDCP-Mix cells expressing Bcr-Abl tyrosine kinase activity remain growth factor dependent and retain their ability to differentiate. Normal neutrophilic cells are formed in response to G-CSF and GM-CSF. In addition, the transfected FDCP-Mix cells grown at the permissive temperature for Bcr-Abl tyrosine kinase activity display enhanced survival and proliferation in low concentrations of growth factor. These findings are consistent with the initial subtle changes seen in CML progenitor cells during the chronic phase and confirm that Bcr-Abl effects are context specific, i.e. they depend on the origin and developmental potential of the transfected cells. This questions the significance of studies in non-haemopoietic and differentiation blocked haemopoietic cells.

KW - Bcr-Abl

KW - chronic myeloid leukaemia

KW - stem cell line

U2 - 10.1038/sj.onc.1201969

DO - 10.1038/sj.onc.1201969

M3 - Journal article

C2 - 9704934

VL - 17

SP - 667

EP - 672

JO - Oncogene

JF - Oncogene

SN - 0950-9232

IS - 5

ER -