| Description: |
Cancer is a disease of genes. Uncontrolled cell growth is the outcome from genetic as well as epigenetic alterations, resulting in a tumor cell mass that harbors a cancer genome. During progression, the tumor acquires self-dependence and the ability to invade other tissues and metastasize. Genetic predisposition and environmental factors such as life style, diet and exposure to carcinogenetic compounds promote initiation of tumors. The laboratory rat (Rattus norvegicus) has been used as an animal model in medical research for over 150 years. By using a genetically well-defined rat model in a controlled environment, we have studied two cancer models for DMBA-induced fibrosarcoma and spontaneous endometrial cancer. In the fibrosarcoma model an F1 progeny from two inbred rat strains, BN and LE, was used and tumors were induced by a single injection of the carcinogenic agent DMBA. The tumors were used for Allelic Imbalance analysis as well as identifying putative candidate genes on chromosome1 displaying a region with gene amplification. We could successfully identify Jak2 as a candidate gene for the amplification at the distal part of chromosome1 in one of the fibrosarcoma cell lines. Adjacent to this region on chromosome1, the Allelic Imbalance analysis displayed signs for loss of heterozygosity in the Pten locus. No mutation was found in the remaining allele, suggesting that Pten is contributing to the fibrosarcoma development in these DMBA-induced tumors by a haploinsufficient mechanism. The endometrial tumor model is composed of the BDII rat strain, predisposed to spontaneously develop endometrial cancer. Tumors obtained from progeny from intercrosses and backcrosses between the BDII strain and two strains not prone to develop endometrial cancer, were used to classify and characterize the BDII tumors according to the human classification system. We could conclude that the BDII tumors resemble the human hormone dependent type I tumors, best. This conclusion was confirmed when we tested some of our result from ... |
| Relation: |
I.Hamta A*, Adamovic T*, Samuelson E, Helou K, Behboudi A and Levan G. Chromosome ideograms of the laboratory rat (Rattus norvegicus) based on high-resolution banding, and anchoring of the cytogenetic map to the DNA sequence by FISH in sample chromosomes. Cytogenetics and Genome Research. 2006;115(2):158-68. ::doi::10.1159/000095237; II. Sjöling Å, Lindholm H, Samuelson E, Yamasaki Y, Watanabe TK, Tanigami A, Levan G. Analysis of chromosomal aberrations involving chromosome 1q31-->q53 in a DMBA-induced rat fibrosarcoma cell line: amplification and overexpression of Jak2. Cytogenetics and Cell Genetics. 2001;95(3-4):202-9. ::doi::10.1159/000059347; III. Sjöling Å, Samuelson E, Adamovic T, Behboudi A, Röhme D, Levan G. Recurrent allelic imbalance at the rat Pten locus in DMBA-induced fibrosarcomas. Genes Chromosomes, and Cancer. 2003 Jan;36(1):70-9. ::doi::10.1002/gcc.10143; IV. Samuelson E, Hedberg C, Nilsson S and Behboudi A. Molecular classification of spontaneous endometrial adenocarcinomas in BDII rats. 2008. Provisionally accepted for publication in Endocrine-Related Cancer.; V. Samuelson E*, Levan K*, Adamovic T, Levan G and Horvath G. Recurrent gene amplifications in human type I endometrial adenocarcinoma detected by in situ hybridization. Cancer Genetics and cytogenetics. 2008;181:25-30. ::doi::10.1016/j.cancergencyto.2007.11.006; http://hdl.handle.net/2077/18356 |