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Updated: May 13, 2026

Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
The diverse heterogeneity of molecular alterations in prostate cancer identified through next-generation sequencing
Alexander W Wyatt1, Fan Mo, Yuzhuo Wang
1Vancouver Prostate Centre & Department of Urologic Sciences, University of British Columbia, Vancouver, BC V6H 3Z6, Canada. awyatt@prostatecentre.com
Abstract:
Prostate cancer is a leading cause of global cancer-related death but attempts to improve diagnoses and develop novel therapies have been confounded by significant patient heterogeneity. In recent years, the application of next-generation sequencing to hundreds of prostate tumours has defined novel molecular subtypes and characterized extensive genomic aberration underlying disease initiation and progression. It is now clear that the heterogeneity observed in the clinic is underpinned by a molecular landscape rife with complexity, where genomic rearrangements and rare mutations combine to amplify transcriptomic diversity. This review dissects our current understanding of prostate cancer 'omics', including the sentinel role of copy number variation, the growing spectrum of oncogenic fusion genes, the potential influence of chromothripsis, and breakthroughs in defining mutation-associated subtypes. Increasing evidence suggests that genomic lesions frequently converge on specific cellular functions and signalling pathways, yet recurrent gene aberration appears rare. Therefore, it is critical that we continue to define individual tumour genomes, especially in the context of their expressed transcriptome. Only through improved characterisation of tumour to tumour variability can we advance to an age of precision therapy and personalized oncology.
Insights
Understanding prostate cancer patient heterogeneity is key to improving diagnosis and therapy. Genomic and transcriptomic analysis reveals complex molecular subtypes, paving the way for precision medicine.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Prostate cancer is a major cause of cancer death globally.
- Significant patient heterogeneity complicates diagnosis and treatment development.
- Next-generation sequencing has identified novel molecular subtypes and genomic aberrations in prostate tumors.
Purpose of the Study:
- To review current understanding of prostate cancer 'omics'.
- To highlight the complexity of genomic aberrations driving disease progression.
- To emphasize the need for integrated genomic and transcriptomic analysis for precision therapy.
Main Methods:
- Review of recent literature on prostate cancer genomics and transcriptomics.
- Analysis of next-generation sequencing data from prostate tumors.
- Dissection of key molecular features including copy number variation, fusion genes, and mutations.
Main Results:
- Prostate cancer heterogeneity is underpinned by a complex molecular landscape.
- Genomic rearrangements and rare mutations contribute to transcriptomic diversity.
- Genomic lesions often converge on specific cellular functions and signaling pathways, but recurrent aberrations are rare.
Conclusions:
- Individual tumor genome and transcriptome characterization is critical.
- Understanding tumor-to-tumor variability is essential for advancing precision therapy.
- Personalized oncology requires comprehensive molecular profiling.

