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Published on: December 31, 2014
A deficiency in Mdm2 binding protein inhibits Myc-induced B-cell proliferation and lymphomagenesis
J Odvody1, T Vincent, M P Arrate
1Department of Pathology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
Abstract:
Mdm2 binding protein (MTBP) has been implicated in cell-cycle arrest and the Mdm2/p53 tumor suppressor pathway through its interaction with Mdm2. To determine the function of MTBP in tumorigenesis and its potential role in the Mdm2/p53 pathway, we crossed Mtbp-deficient mice to Emu-myc transgenic mice, in which overexpression of the oncogene c-Myc induces B-cell lymphomas primarily through inactivation of the Mdm2/p53 pathway. We report that Myc-induced B-cell lymphoma development in Mtbp heterozygous mice was profoundly delayed. Surprisingly, reduced levels of Mtbp did not lead to an increase in B-cell apoptosis or affect Mdm2. Instead, an Mtbp deficiency inhibited Myc-induced proliferation and the upregulation of Myc target genes necessary for cell growth. Consistent with a role in proliferation, Mtbp expression was induced by Myc and other factors that promote cell-cycle progression and was elevated in lymphomas from humans and mice. Therefore, Mtbp functioned independent of Mdm2 and was a limiting factor for the proliferative and transforming functions of Myc. Thus, Mtbp is a previously unrecognized regulator of Myc-induced tumorigenesis.
Insights
Mdm2 binding protein (MTBP) is a novel regulator of Myc-induced cancer. Reduced MTBP levels delay lymphoma formation by inhibiting cell proliferation, independent of the Mdm2/p53 pathway.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mdm2 binding protein (MTBP) is linked to cell-cycle arrest and the Mdm2/p53 tumor suppressor pathway.
- The oncogene c-Myc drives B-cell lymphomas via Mdm2/p53 pathway inactivation.
Purpose of the Study:
- To investigate MTBP's function in tumorigenesis.
- To determine MTBP's role in the Mdm2/p53 pathway and Myc-driven cancers.
Main Methods:
- Crossed Mtbp-deficient mice with Emu-myc transgenic mice.
- Analyzed B-cell lymphoma development, apoptosis, Mdm2 levels, and Myc target gene expression.
Main Results:
- Myc-induced B-cell lymphoma development was significantly delayed in Mtbp heterozygous mice.
- Reduced MTBP did not affect B-cell apoptosis or Mdm2 levels.
- Mtbp deficiency inhibited Myc-induced proliferation and upregulation of Myc target genes.
- MTBP expression is induced by Myc and elevated in lymphomas.
Conclusions:
- MTBP functions independently of Mdm2 in tumorigenesis.
- MTBP is a limiting factor for Myc's proliferative and transforming functions.
- MTBP is a previously unrecognized regulator of Myc-induced tumorigenesis.
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