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Nonsense-mediated decay microarray analysis identifies mutations of EPHB2 in human prostate cancer
Authors:Huusko Pia  Ponciano-Jackson Damaris  Wolf Maija  Kiefer Jeff A  Azorsa David O  Tuzmen Sukru  Weaver Don  Robbins Christiane  Moses Tracy  Allinen Minna  Hautaniemi Sampsa  Chen Yidong  Elkahloun Abdel  Basik Mark  Bova G Steven  Bubendorf Lukas  Lugli Alessandro  Sauter Guido  Schleutker Johanna  Ozcelik Hilmi  Elowe Sabine  Pawson Tony  Trent Jeffrey M  Carpten John D  Kallioniemi Olli-P  Mousses Spyro
Affiliation:Translational Genomics Research Institute, Cancer Drug Development Laboratory, 20 Firstfield Road, Suite 110, Gaithersburg, Maryland 20878, USA.
Abstract:The identification of tumor-suppressor genes in solid tumors by classical cancer genetics methods is difficult and slow. We combined nonsense-mediated RNA decay microarrays and array-based comparative genomic hybridization for the genome-wide identification of genes with biallelic inactivation involving nonsense mutations and loss of the wild-type allele. This approach enabled us to identify previously unknown mutations in the receptor tyrosine kinase gene EPHB2. The DU 145 prostate cancer cell line, originating from a brain metastasis, carries a truncating mutation of EPHB2 and a deletion of the remaining allele. Additional frameshift, splice site, missense and nonsense mutations are present in clinical prostate cancer samples. Transfection of DU 145 cells, which lack functional EphB2, with wild-type EPHB2 suppresses clonogenic growth. Taken together with studies indicating that EphB2 may have an essential role in cell migration and maintenance of normal tissue architecture, our findings suggest that mutational inactivation of EPHB2 may be important in the progression and metastasis of prostate cancer.
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