4.7 Article

Pathway discovery in mantle cell lymphoma by integrated analysis of high-resolution gene expression and copy number profiling

Journal

BLOOD
Volume 116, Issue 6, Pages 953-961

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2010-01-263806

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Funding

  1. Instituto de Salud Carlos III
  2. Fondo Investigaciones Sanitarias [FIS06/0150, PI08/0077]
  3. Comision Interministerial de Ciencia y Tecnologia Espanola [SAF08/3630]
  4. Instituto de Salud Carlos III Red Tematica de Investigacion Cooperativa de Cancer [2006RET2039]
  5. National Institutes of Health [5 U01 CA114778-03]
  6. Lymphoma Research Foundation [LRFMCLI-05-023]
  7. Interdisciplinary Center for Clinical Research, University of Wurzburg, Wurzburg, Germany
  8. Robert-Bosch-Stiftung GmbH

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The genome of mantle cell lymphoma (MCL) is, in addition to the translocation t(11;14), characterized by a high number of secondary chromosomal gains and losses that probably account for the various survival times of MCL patients. We investigated 77 primary MCL tumors with available clinical information using high-resolution RNA expression and genomic profiling and applied our recently developed gene expression and dosage integrator algorithm to identify novel genes and pathways that may be of relevance for the pathobiology of MCL. We show that copy number neutral loss of heterozygosity is common in MCL and targets regions that are frequently affected by deletions. The molecular consequences of genomic copy number changes appear complex, even in genomic loci with identified tumor suppressors, such as the region 9p21 containing the CDKN2A locus. Moreover, the deregulation of novel genes, such as CUL4A, ING1, and MCPH1, may affect the 2 crucial pathogenetic mechanisms in MCL, the disturbance of the proliferation, and DNA damage response pathways. Deregulation of the Hippo pathway may have a pathogenetic role in MCL because decreased expression of its members MOBKL2A, MOBKL2B, and LATS2 was associated with inferior outcome, including an independent validation series of 32 MCLs. (Blood. 2010;116(6):953-961)

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