TY - JOUR
T1 - Extensive expression of craniofacial related homeobox genes in canine mammary sarcomas
AU - Wensman, Helena
AU - Göransson, Hanna
AU - Leuchowius, Karl-Johan
AU - Strömberg, Sara
AU - Pontén, Fredrik
AU - Isaksson, Anders
AU - Rutteman, Gerard R
AU - Heldin, Nils-Erik
AU - Pejler, Gunnar
AU - Hellmén, Eva
PY - 2009
Y1 - 2009
N2 - The global gene expression in three types of canine mammary tumors: carcinoma, fibrosarcoma and osteosarcoma were investigated by Affymetrix gene array technology. Unsupervised clustering analysis revealed a close clustering of the respective tumor types, with fibrosarcomas clustering close to the osteosarcomas and the carcinomas clustering closer to non-malignant mammary tissues (NMTs). A number of epithelial markers were expressed in both carcinomas and NMTs, whereas the sarcomas expressed genes related to mesenchymal differentiation. A comparison of the gene expression profile of the sarcomas versus carcinoma/NMTs revealed that the sarcomas, in particular the osteosarcomas, showed a striking upregulation of a panel of homeobox genes previously linked to craniofacial bone formation. In line with this finding, osteosarcomas showed an upregulation of bone morphogenetic proteins (BMPs) and of genes associated with retinoic acid signaling. Increased homeobox gene expression in sarcomas was also confirmed at the protein level by immunohistochemical analysis of tumor tissue, and in an osteosarcoma cell line after stimulation by BMP-2. These findings suggest that the development of mammary sarcomas specifically involves triggering of a set of homeobox genes related to neural crest and craniofacial bone development.
AB - The global gene expression in three types of canine mammary tumors: carcinoma, fibrosarcoma and osteosarcoma were investigated by Affymetrix gene array technology. Unsupervised clustering analysis revealed a close clustering of the respective tumor types, with fibrosarcomas clustering close to the osteosarcomas and the carcinomas clustering closer to non-malignant mammary tissues (NMTs). A number of epithelial markers were expressed in both carcinomas and NMTs, whereas the sarcomas expressed genes related to mesenchymal differentiation. A comparison of the gene expression profile of the sarcomas versus carcinoma/NMTs revealed that the sarcomas, in particular the osteosarcomas, showed a striking upregulation of a panel of homeobox genes previously linked to craniofacial bone formation. In line with this finding, osteosarcomas showed an upregulation of bone morphogenetic proteins (BMPs) and of genes associated with retinoic acid signaling. Increased homeobox gene expression in sarcomas was also confirmed at the protein level by immunohistochemical analysis of tumor tissue, and in an osteosarcoma cell line after stimulation by BMP-2. These findings suggest that the development of mammary sarcomas specifically involves triggering of a set of homeobox genes related to neural crest and craniofacial bone development.
KW - Canine mammary tumors
KW - Mammary sarcoma
KW - Mammary osteosarcoma
KW - Homeobox transcription factor
KW - Gene expression profiling
KW - Craniofacial
KW - Canine mammary tumors
KW - Mammary sarcoma
KW - Mammary osteosarcoma
KW - Homeobox transcription factor
KW - Gene expression profiling
KW - Craniofacial
UR - https://res.slu.se/id/publ/28034
U2 - 10.1007/s10549-008-0243-7
DO - 10.1007/s10549-008-0243-7
M3 - Journal article
C2 - 19048371
SN - 0167-6806
VL - 118
SP - 333
EP - 343
JO - Breast Cancer Research and Treatment
JF - Breast Cancer Research and Treatment
IS - 2
ER -