NCBI Logo
GEO Logo
   NCBI > GEO > Accession DisplayHelp Not logged in | LoginHelp
GEO help: Mouse over screen elements for information.
          Go
Series GSE24261 Query DataSets for GSE24261
Status Public on Dec 26, 2010
Title Runx2 Transcriptome of Prostate Cancer Cells: Insights into Invasiveness and Bone Metastasis
Organism Homo sapiens
Experiment type Expression profiling by array
Summary Background: Prostate cancer (PCa) cells preferentially metastasize to bone at least in part by acquiring osteomimetic properties. Runx2, an osteoblast master transcription factor, is aberrantly expressed in PCa cells, and promotes their metastatic phenotype. The transcriptional programs regulated by Runx2 have been extensively studied during osteoblastogenesis, where it activates or represses target genes in a context-dependent manner. However, little is known about the gene regulatory networks influenced by Runx2 in PCa cells. We therefore investigated genome-wide mRNA expression changes in PCa cells in response to Runx2.

Results: We engineered a C4-2B PCa sub-line called C4-2B/Rx2dox, in which doxycycline (Dox) treatment stimulates Runx2 expression from very low levels to levels observed in other PCa cells. Transcriptome profiling using whole genome expression array followed by in silico analysis indicated that Runx2 upregulated a multitude of genes with prominent cancer-associated functions. They included secreted factors (CSF2, SDF-1), proteolytic enzymes (MMP9, CST7), cytoskeleton modulators (SDC2, Twinfilin, SH3PXD2A), intracellular signaling molecules (DUSP1, SPHK1, RASD1) and transcription factors (Sox9, SNAI2, SMAD3) functioning in epithelium to mesenchyme transition (EMT), tissue invasion, as well as homing and attachment to bone. Consistent with the gene expression data, induction of Runx2 in C4-2B cells enhanced their invasiveness. It also promoted cellular quiescence by blocking the G1/S phase transition during cell cycle progression. Furthermore, the cell cycle block was reversed as Runx2 levels declined after Dox withdrawal.

Conclusions: The effects of Runx2 in C4-2B/Rx2dox cells, as well as similar observations made by employing LNCaP, 22RV1 and PC3 cells, highlight multiple mechanisms by which Runx2 promotes the metastatic phenotype of PCa cells, including tissue invasion, homing to bone and induction of high bone turnover. Runx2 is therefore an attractive target for the development of novel diagnostic, prognostic and therapeutic approaches to PCa management. Targeting Runx2 may prove more effective than focusing on its individual downstream genes and pathways.
 
Overall design C4-2B/Rx2dox cells were subjected to microarray gene expression analysis after one and two days of treatment with either Dox or vehicle in biological quadruplicates (a total of 16 samples).
 
Contributor(s) Baniwal SK, Khalid O, Gabet Y, Shah RR, Purcel DJ, Mav D, Kohn-Gabet AE, Shi Y, Coetzee GA, Frenkel B
Citation(s) 20863401, 22187159
Submission date Sep 21, 2010
Last update date Mar 20, 2017
Contact name Deepak Mav
Organization name Sciome LLC
Street address 2 Davis Drive
City Research Triangle Park
State/province NC
ZIP/Postal code 27709
Country USA
 
Platforms (1)
GPL6883 Illumina HumanRef-8 v3.0 expression beadchip
Samples (16)
GSM596820 Day1_veh_rep1
GSM596821 Day1_veh_rep2
GSM596822 Day1_veh_rep3
Relations
BioProject PRJNA132987

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE24261_RAW.tar 3.9 Mb (http)(custom) TAR
GSE24261_non-normalized.txt.gz 2.4 Mb (ftp)(http) TXT
Processed data included within Sample table

| NLM | NIH | GEO Help | Disclaimer | Accessibility |
NCBI Home NCBI Search NCBI SiteMap