The growth and progression of solid tumors involves dynamic cross-talk between cancer epithelium and the surrounding microenvironment. To date, molecular profiling has largely been restricted to the epithelial component of tumors; therefore, features underpinning the persistent protumorigenic phenotype of the tumor microenvironment are unknown. Using whole-genome bisulfite sequencing, we show for the first time that cancer-associated fibroblasts (CAFs) from localized prostate cancer display remarkably distinct and enduring genome-wide changes in DNA methylation, significantly at enhancers and promoters, compared to nonmalignant prostate fibroblasts (NPFs). Differentially methylated regions associated with changes in gene expression have can...
Prostate cancer (PCa) is the most common epithelial cancer and second leading cause of cancer death ...
Cancer cells display altered methylation signatures distinguishing them from normal cells. Originati...
DNA damage found in prostate cancer-associated fibroblasts (CAF) promotes tumor progression. In the ...
The growth and progression of solid tumors involves dynamic cross-talk between cancer epithelium and...
BACKGROUND: Prostate cancer changes the phenotype of cells within the stromal microenvironment, incl...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
BACKGROUND: Human prostate cancers display numerous DNA methylation changes compared to normal tissu...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
SummaryA critical need in understanding the biology of prostate cancer is characterizing the molecul...
A critical need in understanding the biology of prostate cancer is characterizing the molecular diff...
Although prostate cancer (PCa) is the second leading cause of cancer death among men worldwide, not ...
International audienceBreast cancer-associated fibroblasts (CAFs) have a crucial role in tumor initi...
Epigenetic modifications remain dynamic in most somatic cells to enable flexible gene activity. Simu...
Prostate cancer (PCa) is the most common epithelial cancer and second leading cause of cancer death ...
Cancer cells display altered methylation signatures distinguishing them from normal cells. Originati...
DNA damage found in prostate cancer-associated fibroblasts (CAF) promotes tumor progression. In the ...
The growth and progression of solid tumors involves dynamic cross-talk between cancer epithelium and...
BACKGROUND: Prostate cancer changes the phenotype of cells within the stromal microenvironment, incl...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
BACKGROUND: Human prostate cancers display numerous DNA methylation changes compared to normal tissu...
Widespread genome hypo-methylation and promoter hyper-methylation of epithelium-specific genes are h...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
Although DNA methylation is a key regulator of gene expression, the comprehensive methylation landsc...
SummaryA critical need in understanding the biology of prostate cancer is characterizing the molecul...
A critical need in understanding the biology of prostate cancer is characterizing the molecular diff...
Although prostate cancer (PCa) is the second leading cause of cancer death among men worldwide, not ...
International audienceBreast cancer-associated fibroblasts (CAFs) have a crucial role in tumor initi...
Epigenetic modifications remain dynamic in most somatic cells to enable flexible gene activity. Simu...
Prostate cancer (PCa) is the most common epithelial cancer and second leading cause of cancer death ...
Cancer cells display altered methylation signatures distinguishing them from normal cells. Originati...
DNA damage found in prostate cancer-associated fibroblasts (CAF) promotes tumor progression. In the ...