Candidate metastasis suppressor genes uncovered by array comparative genomic hybridization in a mouse allograft model of prostate cancer.


Autoria(s): Yi, Y; Srinivas, Nandana; Case, Thomas; Nelson, Colleen; Radmilovic, T; Matusik, Robert; Tsuchiya, K
Data(s)

2009

Resumo

Background The purpose of this study was to identify candidate metastasis suppressor genes from a mouse allograft model of prostate cancer (NE-10). This allograft model originally developed metastases by twelve weeks after implantation in male athymic nude mice, but lost the ability to metastasize after a number of in vivo passages. We performed high resolution array comparative genomic hybridization on the metastasizing and non-metastasizing allografts to identify chromosome imbalances that differed between the two groups of tumors. Results This analysis uncovered a deletion on chromosome 2 that differed between the metastasizing and non-metastasizing tumors. Bioinformatics filters were employed to mine this region of the genome for candidate metastasis suppressor genes. Of the 146 known genes that reside within the region of interest on mouse chromosome 2, four candidate metastasis suppressor genes (Slc27a2, Mall, Snrpb, and Rassf2) were identified. Quantitative expression analysis confirmed decreased expression of these genes in the metastasizing compared to non-metastasizing tumors. Conclusion This study presents combined genomics and bioinformatics approaches for identifying potential metastasis suppressor genes. The genes identified here are candidates for further studies to determine their functional role in inhibiting metastases in the NE-10 allograft model and human prostate cancer.

Identificador

http://eprints.qut.edu.au/37418/

Publicador

BioMed Central

Relação

DOI:10.1186/1755-8166-2-18

Yi, Y, Srinivas, Nandana, Case, Thomas, Nelson, Colleen, Radmilovic, T, Matusik, Robert, & Tsuchiya, K (2009) Candidate metastasis suppressor genes uncovered by array comparative genomic hybridization in a mouse allograft model of prostate cancer. Molecular Cytogenetics, 2(18), pp. 1-9.

Fonte

Faculty of Health; Institute of Health and Biomedical Innovation

Palavras-Chave #060114 Systems Biology #060400 GENETICS #060408 Genomics #111201 Cancer Cell Biology #Metastasis, #Comparative Genomic Hybridization, #Prostate Cancer #OAVJ
Tipo

Journal Article