4.5 Article

The Prostate Stromal Transcriptome in Aggressive and Lethal Prostate Cancer

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MOLECULAR CANCER RESEARCH
卷 21, 期 3, 页码 253-260

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1541-7786.MCR-22-0627

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Previous studies mainly focused on prognostic biomarkers in prostate cancer tumors, but it is now recognized that the tumor microenvironment plays a role in cancer progression. This study examined the gene expression in prostate stroma and identified genes and pathways associated with aggressive and lethal prostate cancer, validating previously identified biomarkers.
Prostate cancer has a heterogeneous prognosis. Most previous studies have focused on the identification of prognostic biomarkers in the prostate cancer tumor. However, it is increasingly recognized that the tumor microenvironment contributes to prostate cancer aggressiveness and progression. We therefore examined whole transcriptome expression of the prostate stroma and associations with aggressive and lethal prostate cancer. We performed RNA sequencing (Illumina TruSeq Exome Capture) of 272 tumoradjacent and 120 benign-adjacent macrodissected prostate stromal samples from 293 men with prostate cancer from the Health Professionals Follow-up Study and Physicians' Health Study. We performed differential expression analysis comparing gene expression and pathways by Gleason score and lethal outcome. We also tested a previously developed stromal gene signature of Gleason score in these datasets. Comparing high- with low-Gleason score cancers, 26 genes (P < 0.001) and 12 pathways (FDR < 0.20) were significantly differentially expressed in tumor-adjacent stroma, including pathways related to stroma composition remodeling and DNA repair, with 73 genes and 65 pathways significant in benign-adjacent stroma. Comparing lethal with nonlethal prostate cancer, 11 genes were differentially expressed in tumor-adjacent and 15 genes in benign-adjacent stroma, and pathways involved in inflammatory response were differentially enriched in both tumor and benign-adjacent stroma. In addition, our previously identified Gleason stromal gene signature was validated to be associated with Gleason score in these data.

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