Lineage plasticity in prostate cancer depends on JAK/STAT inflammatory signaling.
Joseph M ChanSamir ZaidiJillian R LoveJimmy L ZhaoManu SettyKristine M WadoskyAnuradha GopalanZi-Ning ChooSitara PersadJungmin ChoiJustin LaClairKayla E LawrenceOjasvi ChaudharyTianhao XuIgnas MasilionisIrina LinkovShangqian WangCindy LeeAfsar BarlasMichael J MorrisLinas MazutisRonan ChalignéJuliet ChenDavid W GoodrichWouter R KarthausDana Pe'erCharles L SawyersPublished in: Science (New York, N.Y.) (2022)
Drug resistance in cancer is often linked to changes in tumor cell state or lineage, but the molecular mechanisms driving this plasticity remain unclear. Using murine organoid and genetically engineered mouse models, we investigated the causes of lineage plasticity in prostate cancer and its relationship to antiandrogen resistance. We found that plasticity initiates in an epithelial population defined by mixed luminal-basal phenotype and that it depends on increased Janus kinase (JAK) and fibroblast growth factor receptor (FGFR) activity. Organoid cultures from patients with castration-resistant disease harboring mixed-lineage cells reproduce the dependency observed in mice by up-regulating luminal gene expression upon JAK and FGFR inhibitor treatment. Single-cell analysis confirms the presence of mixed-lineage cells with increased JAK/STAT (signal transducer and activator of transcription) and FGFR signaling in a subset of patients with metastatic disease, with implications for stratifying patients for clinical trials.
Keyphrases
- single cell
- prostate cancer
- rna seq
- induced apoptosis
- gene expression
- high throughput
- cell cycle arrest
- clinical trial
- radical prostatectomy
- ejection fraction
- mouse model
- newly diagnosed
- cell fate
- dna methylation
- papillary thyroid
- signaling pathway
- prognostic factors
- type diabetes
- stem cells
- mesenchymal stem cells
- open label
- protein kinase
- study protocol
- bone marrow
- cell therapy
- high fat diet induced
- atomic force microscopy
- inflammatory response
- double blind