Homozygous deletions localize novel tumor suppressor genes in B-cell lymphomas

Cinta Mestre-Escorihuela(Universidad de Navarra), Fanny Rubio-Moscardó(Universidad de Navarra), J Richter(Universidad de Navarra), Reiner Siebert(University Hospital Schleswig-Holstein), Joan Climent(Universidad de Navarra), Vicente Fresquet(Universidad de Navarra), Elena Beltrán(Universidad de Navarra), Xabier Agirre(Universidad de Navarra), Isabel Marugán(Universitat de València), Miguel Marín(Universitat de València), Andreas Rosenwald(University of Würzburg), Keiji Sugimoto(University of Leicester), Luise Wheat(University of Leicester), E. Loraine Karran(University of Leicester), Juan F. Garcı́a(Spanish National Cancer Research Centre), Lydia Sánchez(Spanish National Cancer Research Centre), Felipe Prósper(Universidad de Navarra), Louis M. Staudt(National Institutes of Health), Daniel Pinkel(Cancer Research Institute), Martin J.S. Dyer(University of Leicester), José A. Martinez‐Climent(Universidad de Navarra)
Blood
September 7, 2006
Cited by 241Open Access
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Abstract

Integrative genomic and gene-expression analyses have identified amplified oncogenes in B-cell non-Hodgkin lymphoma (B-NHL), but the capability of such technologies to localize tumor suppressor genes within homozygous deletions remains unexplored. Array-based comparative genomic hybridization (CGH) and gene-expression microarray analysis of 48 cell lines derived from patients with different B-NHLs delineated 20 homozygous deletions at 7 chromosome areas, all of which contained tumor suppressor gene targets. Further investigation revealed that only a fraction of primary biopsies presented inactivation of these genes by point mutation or intragenic deletion, but instead some of them were frequently silenced by epigenetic mechanisms. Notably, the pattern of genetic and epigenetic inactivation differed among B-NHL subtypes. Thus, the P53-inducible PIG7/LITAF was silenced by homozygous deletion in primary mediastinal B-cell lymphoma and by promoter hypermethylation in germinal center lymphoma, the proapoptotic BIM gene presented homozygous deletion in mantle cell lymphoma and promoter hypermethylation in Burkitt lymphoma, the proapoptotic BH3-only NOXA was mutated and preferentially silenced in diffuse large B-cell lymphoma, and INK4c/P18 was silenced by biallelic mutation in mantle-cell lymphoma. Our microarray strategy has identified novel candidate tumor suppressor genes inactivated by genetic and epigenetic mechanisms that substantially vary among the B-NHL subtypes.


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