4.5 Article

A transcriptome study of p53-pathway related prognostic gene signature set in bladder cancer

Journal

HELIYON
Volume 9, Issue 10, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.heliyon.2023.e21058

Keywords

NMF; BLCA; p53; Biomarker; Enrichment; TCGA; Signature-set; Nomogram; DLX1; DSC1

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This study investigated the role of p53 pathway genes in bladder cancer through transcriptomics analysis. Two subtypes of bladder cancer were identified, one associated with immune-related pathways and poor prognosis, and the other associated with steroid synthesis and drug metabolism pathways and better prognosis. A signature gene set consisting of six genes was created and a risk model was developed. This study has the potential to significantly impact the development of biomarkers for bladder cancer.
p53 pathway is important in tumorigenesis. However, no study has been performed to specifically investigate the role of p53 pathway genes in bladder cancer (BLCA). In this study, transcriptomics data of muscle invasive bladder cancer patients (n = 411) from The Cancer Genome Atlas (TCGA) were investigated. Using the hallmark p53 pathway gene set, the Non-Negative Matrix factorization (NMF) analysis identified two subtypes (C1 and C2). Clinical, survival, and immunological analysis were done to validate distinct characteristics of the subtypes. Pathway enrichment analysis showed the subtype C1 with poor prognosis having enrichment in genes of the immunity related pathways, where C2 subtype with better prognosis being enriched in genes of the steroid synthesis and drug metabolism pathways. A signature gene set consisting of MDGA2, GNLY, GGT2, UGT2B4, DLX1, and DSC1 was created followed by a risk model. Their expressions were analyzed in RNA extracted from the blood and matched tumor tissues of BLCA patients (n = 10). DSC1 had significant difference of expression (p = 0.005) between the blood and tumor tissues in our BLCA samples. Contrary to the usual normal bladder tissue to blood ratio, DLX1 expression was lower (p = 0.02734) in tumor tissues than in blood. Being the first research of p53 pathway related signature gene set in bladder cancer, this study potentially has a substantial impact on the development of biomarkers for BLCA.

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