Global DNA methylation profiling reveals silencing of a secreted form of Epha7 in mouse and human germinal center B-cell lymphomas
Open Access
- 29 January 2007
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 26 (29) , 4243-4252
- https://doi.org/10.1038/sj.onc.1210211
Abstract
Most human lymphomas originate from transformed germinal center (GC) B lymphocytes. While activating mutations and translocations of MYC, BCL2 and BCL6 promote specific GC lymphoma subtypes, other genetic and epigenetic modifications that contribute to malignant progression in the GC remain poorly defined. Recently, aberrant expression of the TCL1 proto-oncogene was identified in major GC lymphoma subtypes. TCL1 transgenic mice offer unique models of both aggressive GC and marginal zone B-cell lymphomas, further supporting a role for TCL1 in B-cell transformation. Here, restriction landmark genomic scanning was employed to discover tumor-associated epigenetic alterations in malignant GC and marginal zone B-cells in TCL1 transgenic mice. Multiple genes were identified that underwent DNA hypermethylation and decreased expression in TCL1 transgenic tumors. Further, we identified a secreted isoform of EPHA7, a member of the Eph family of receptor tyrosine kinases that are able to influence tumor invasiveness, metastasis and neovascularization. EPHA7 was hypermethylated and repressed in both mouse and human GC B-cell non-Hodgkin lymphomas, with the potential to influence tumor progression and spread. These data provide the first set of hypermethylated genes with the potential to complement TCL1-mediated GC B-cell transformation and spread.Keywords
This publication has 43 references indexed in Scilit:
- Dysregulated TCL1 requires the germinal center and genome instability for mature B-cell transformationBlood, 2006
- B cell receptors in TCL1 transgenic mice resemble those of aggressive, treatment-resistant human chronic lymphocytic leukemiaProceedings of the National Academy of Sciences, 2006
- The TCL1 family of oncoproteins: co-activators of transformationNature Reviews Cancer, 2005
- Eph receptor signalling casts a wide net on cell behaviourNature Reviews Molecular Cell Biology, 2005
- Eph-modulated Cell Morphology, Adhesion and Motility in CarcinogenesisIUBMB Life, 2005
- Global assessment of promoter methylation in a mouse model of cancer identifies ID4 as a putative tumor-suppressor gene in human leukemiaNature Genetics, 2005
- Human dendritic cells express neuronal Eph receptor tyrosine kinases: role of EphA2 in regulating adhesion to fibronectinBlood, 2003
- Soluble Eph A receptors inhibit tumor angiogenesis and progression in vivoOncogene, 2002
- BLAT—The BLAST-Like Alignment ToolGenome Research, 2002
- Aberrant CpG-island methylation has non-random and tumour-type–specific patternsNature Genetics, 2000