Insertional mutagenesis identifies drivers of a novel oncogenic pathway in invasive lobular breast carcinoma
NATURE GENETICS
Authors: Kas, Sjors M.; de Ruiter, Julian R.; Schipper, Koen; Annunziato, Stefano; Schut, Eva; Klarenbeek, Sjoerd; Drenth, Anne Paulien; van der Burg, Eline; Klijn, Christiaan; ten Hoeve, Jelle J.; Adams, David J.; Koudijs, Marco J.; Wesseling, Jelle; Nethe, Micha; Wessels, Lodewyk F. A.; Jonkers, Jos
Abstract
Invasive lobular carcinoma (ILC) is the second most common breast cancer subtype and accounts for 8-14% of all cases. Although the majority of human ILCs are characterized by the functional loss of E-cadherin (encoded by CDH1), inactivation of Cdh1 does not predispose mice to develop mammary tumors, implying that mutations in additional genes are required for ILC formation in mice. To identify these genes, we performed an insertional mutagenesis screen using the Sleeping Beauty transposon system in mice with mammary-specific inactivation of Cdh1. These mice developed multiple independent mammary tumors of which the majority resembled human ILC in terms of morphology and gene expression. Recurrent and mutually exclusive transposon insertions were identified in Myh9, Ppp1r12a, Ppp1r12b and Trp53bp2, whose products have been implicated in the regulation of the actin cytoskeleton. Notably, MYH9, PPP1R12B and TP53BP2 were also frequently aberrated in human ILC, highlighting these genes as drivers of a novel oncogenic pathway underlying ILC development.
Transcriptional profiling of genes at the human common fragile site FRA1H in tumor-derived cell lines
CANCER GENETICS AND CYTOGENETICS
Authors: Pelliccia, Franca; Curatolo, Angela; Limongi, Zaira M.; Bosco, Nazario; Rocchi, Angela
Abstract
Common fragile sites (CFSs) are chromosome regions that exhibit gaps and breaks when the cells are exposed to replication stress and to some DNA-binding compounds. In cancer cells, the CFSs are frequently involved in recurrent chromosome rearrangements. Furthermore, altered expression of associated genes, known or potential oncogenes, and tumor-suppressor genes has often been observed. Seventeen of the 88 listed CFSs have been analyzed at the molecular level, but the basis of their fragility has not been clarified. In the present work, the nine genes TGFB2, IARS2, MARK1, TAFI A, TP53BP2, ADPRT, including a very large gene ESRRG and two microRNA genes, MIRN194-1 and MIRN215, localized in the fragile site FRAM, were investigated by polymerase chain reaction (PCR) for homozygous deletions and by real-time PCR for modification or loss of gene expression in a panel of 19 cancer cell lines. The expression level of five (ESRRG, TGFB2, MIRN194-1, MIRN215, and MARK1) of the nine genes studied presented significant modifications in some of the 19 examined tumor-derived cell lines compared to their normal control tissues. Because of their function, these genes could have a role in neoplastic transformation. (c) 2007 Elsevier Inc. All rights reserved.