Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene
T-cell acute lymphoblastic leukemia (T-ALL) is characterized by the presence of differentiation-inhibited pro- and pre-T-cell blasts. The p16INK4a tumor suppressor gene has been shown to be frequently deleted in human T-ALL cases. Deletion of p16INK4a may be associated with poor prognosis and relap...
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1999-06-01
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doaj-9692a40c9330440383ade90a10e7aea62020-11-24T22:54:29ZengElsevierNeoplasia: An International Journal for Oncology Research1476-55861522-80021999-06-011212813710.1038/sj.neo.7900021Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor GeneKonrad SchoppmeyerPaula S. NorrisMartin Haas T-cell acute lymphoblastic leukemia (T-ALL) is characterized by the presence of differentiation-inhibited pro- and pre-T-cell blasts. The p16INK4a tumor suppressor gene has been shown to be frequently deleted in human T-ALL cases. Deletion of p16INK4a may be associated with poor prognosis and relapse of the disease. Radiation-induced murine T-ALL in C57B1/6 mice shares pathogenetic and molecular characteristics with the human disease. We used the murine disease as a model to study the status of the INK4/ARF gene locus and to examine the effect of p16INK4a-re-expression in T-ALL cells on their leukemic potential in vivo. In 9 of 17 radiation-induced murine T-ALL cell lines, the p16INK4a protein was not expressed as determined by immunoblotting. Southern blot analysis revealed homozygous deletions of the p16INK4a gene locus in three of the nine lines, along with the genes encoding p15INK4b and p19ARF. Transduction of p16INK4a-negative T-ALL lines with retrovirus encoding p16INK4a significantly inhibited their in vitro proliferation by inducing G1-arrest. Importantly, re-expression of p16INK4a in p16INK4a-negative T-ALL cells obliterated the induction of lethal disseminated leukemia in syngeneic mice. This is the first demonstration that re-establishment of p16INK4a expression is critical for in vivo growth regulation of T-ALL cells. http://www.sciencedirect.com/science/article/pii/S1476558699800530p16INK4aT-cell acute lymphoblastic leukemiaretroviral gene transfertumor suppression in vivo |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Konrad Schoppmeyer Paula S. Norris Martin Haas |
spellingShingle |
Konrad Schoppmeyer Paula S. Norris Martin Haas Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene Neoplasia: An International Journal for Oncology Research p16INK4a T-cell acute lymphoblastic leukemia retroviral gene transfer tumor suppression in vivo |
author_facet |
Konrad Schoppmeyer Paula S. Norris Martin Haas |
author_sort |
Konrad Schoppmeyer |
title |
Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene |
title_short |
Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene |
title_full |
Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene |
title_fullStr |
Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene |
title_full_unstemmed |
Inhibition of T-Cell Acute Lymphoblastic Leukemia Proliferation In Vivo by Re-expression of the p16INK4a Tumor Suppressor Gene |
title_sort |
inhibition of t-cell acute lymphoblastic leukemia proliferation in vivo by re-expression of the p16ink4a tumor suppressor gene |
publisher |
Elsevier |
series |
Neoplasia: An International Journal for Oncology Research |
issn |
1476-5586 1522-8002 |
publishDate |
1999-06-01 |
description |
T-cell acute lymphoblastic leukemia (T-ALL) is characterized by the presence of differentiation-inhibited pro- and pre-T-cell blasts. The p16INK4a tumor suppressor gene has been shown to be frequently deleted in human T-ALL cases. Deletion of p16INK4a may be associated with poor prognosis and relapse of the disease. Radiation-induced murine T-ALL in C57B1/6 mice shares pathogenetic and molecular characteristics with the human disease. We used the murine disease as a model to study the status of the INK4/ARF gene locus and to examine the effect of p16INK4a-re-expression in T-ALL cells on their leukemic potential in vivo. In 9 of 17 radiation-induced murine T-ALL cell lines, the p16INK4a protein was not expressed as determined by immunoblotting. Southern blot analysis revealed homozygous deletions of the p16INK4a gene locus in three of the nine lines, along with the genes encoding p15INK4b and p19ARF. Transduction of p16INK4a-negative T-ALL lines with retrovirus encoding p16INK4a significantly inhibited their in vitro proliferation by inducing G1-arrest. Importantly, re-expression of p16INK4a in p16INK4a-negative T-ALL cells obliterated the induction of lethal disseminated leukemia in syngeneic mice. This is the first demonstration that re-establishment of p16INK4a expression is critical for in vivo growth regulation of T-ALL cells.
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topic |
p16INK4a T-cell acute lymphoblastic leukemia retroviral gene transfer tumor suppression in vivo |
url |
http://www.sciencedirect.com/science/article/pii/S1476558699800530 |
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