[PDF][PDF] Integrated transcript and genome analyses reveal NKX2-1 and MEF2C as potential oncogenes in T cell acute lymphoblastic leukemia

I Homminga, R Pieters, AW Langerak, JJ de Rooi… - Cancer cell, 2011 - cell.com
I Homminga, R Pieters, AW Langerak, JJ de Rooi, A Stubbs, M Verstegen, M Vuerhard…
Cancer cell, 2011cell.com
To identify oncogenic pathways in T cell acute lymphoblastic leukemia (T-ALL), we
combined expression profiling of 117 pediatric patient samples and detailed molecular-
cytogenetic analyses including the Chromosome Conformation Capture on Chip (4C)
method. Two T-ALL subtypes were identified that lacked rearrangements of known
oncogenes. One subtype associated with cortical arrest, expression of cell cycle genes, and
ectopic NKX2-1 or NKX2-2 expression for which rearrangements were identified. The …
Summary
To identify oncogenic pathways in T cell acute lymphoblastic leukemia (T-ALL), we combined expression profiling of 117 pediatric patient samples and detailed molecular-cytogenetic analyses including the Chromosome Conformation Capture on Chip (4C) method. Two T-ALL subtypes were identified that lacked rearrangements of known oncogenes. One subtype associated with cortical arrest, expression of cell cycle genes, and ectopic NKX2-1 or NKX2-2 expression for which rearrangements were identified. The second subtype associated with immature T cell development and high expression of the MEF2C transcription factor as consequence of rearrangements of MEF2C, transcription factors that target MEF2C, or MEF2C-associated cofactors. We propose NKX2-1, NKX2-2, and MEF2C as T-ALL oncogenes that are activated by various rearrangements.
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