A Unified Transcriptional, Pharmacogenomic, and Gene Dependency Approach to Decipher the Biology, Diagnostic Markers, and Therapeutic Targets Associated with Prostate Cancer Metastasis.
Manny D BacolodFrancis BaranyPublished in: Cancers (2021)
Our understanding of metastatic prostate cancer (mPrCa) has dramatically advanced during the genomics era. Nonetheless, many aspects of the disease may still be uncovered through reanalysis of public datasets. We integrated the expression datasets for 209 PrCa tissues (metastasis, primary, normal) with expression, gene dependency (GD) (from CRISPR/cas9 screen), and drug viability data for hundreds of cancer lines (including PrCa). Comparative statistical and pathways analyses and functional annotations (available inhibitors, protein localization) revealed relevant pathways and potential (and previously reported) protein markers for minimally invasive mPrCa diagnostics. The transition from localized to mPrCa involved the upregulation of DNA replication, mitosis, and PLK1-mediated events. Genes highly upregulated in mPrCa and with very high average GD (~1) are potential therapeutic targets. We showed that fostamatinib (which can target PLK1 and other over-expressed serine/threonine kinases such as AURKA, MELK, NEK2, and TTK) is more active against cancer lines with more pronounced signatures of invasion (e.g., extracellular matrix organization/degradation). Furthermore, we identified surface-bound (e.g., ADAM15, CD276, ABCC5, CD36, NRP1, SCARB1) and likely secreted proteins (e.g., APLN, ANGPT2, CTHRC1, ADAM12) that are potential mPrCa diagnostic markers. Overall, we demonstrated that comprehensive analyses of public genomics data could reveal potentially clinically relevant information regarding mPrCa.
Keyphrases
- prostate cancer
- genome wide
- poor prognosis
- extracellular matrix
- single cell
- crispr cas
- papillary thyroid
- minimally invasive
- binding protein
- radical prostatectomy
- healthcare
- rna seq
- gene expression
- genome wide identification
- small cell lung cancer
- copy number
- electronic health record
- squamous cell carcinoma
- cell proliferation
- squamous cell
- human health
- transcription factor
- long non coding rna
- high throughput
- amino acid
- genome editing
- dna methylation
- adverse drug
- protein kinase
- big data
- protein protein
- lymph node metastasis
- signaling pathway
- genome wide analysis
- deep learning
- childhood cancer
- young adults
- heat stress
- heat shock