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Epigenomic profiling of neuroendocrine prostate cancer and prostate adenocarcinoma xenografts
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Epigenomic and transcriptomic profiles a of prostate cancer cell line with and without androgen stimulation
PubMed Full text in PMC Similar studies Analyze with GEO2R
Charting the prostate epigenomic landscape from transformation to progression
Post-transcriptional gene regulation by microRNA-194 promotes neuroendocrine transdifferentiation in prostate cancer [ChIP-Seq]
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MicroRNA-194 promotes lineage plasticity in advanced prostate cancer
PubMed Similar studies
Post-transcriptional gene regulation by microRNA-194 promotes neuroendocrine transdifferentiation in prostate cancer
PubMed Similar studies Analyze with GEO2RSRA Run Selector
ONECUT2 Activates Diverse Resistance Drivers of Androgen Receptor-Independent Heterogeneity in Prostate Cancer
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ONECUT2 Activates Diverse Resistance Drivers of Androgen Receptor-Independent Heterogeneity in Prostate Cancer (RNA-seq)
ONECUT2 Activates Diverse Resistance Drivers of Androgen Receptor-Independent Heterogeneity in Prostate Cancer (CUT&RUN-seq)
ONECUT2 Activates Diverse Resistance Drivers of Androgen Receptor-Independent Heterogeneity in Prostate Cancer (ATAC-seq)
Androgen receptor-independent function of FoxA1 in prostate cancer metastasis
Androgen receptor programming in human tissue implicates HOXB13 in prostate pathogenesis
Androgen receptor programming in human tissue implicates HOXB13 in prostate pathogenesis [RNA-Seq]
PubMed Full text in PMC Similar studies Analyze with GEO2RSRA Run Selector
Androgen receptor programming in human tissue implicates HOXB13 in prostate pathogenesis [ChIP-Seq]
Temporal evolution of cellular heterogeneity during the progression to advanced, AR-negative prostate cancer [scRNA-seq]
Temporal evolution of cellular heterogeneity during the progression to advanced, AR-negative prostate cancer [RNA-seq]
Temporal evolution of cellular heterogeneity during the progression to advanced, AR-negative prostate cancer [RRBS]
Temporal evolution of cellular heterogeneity during the progression to advanced, AR-negative prostate cancer
Temporal evolution of cellular heterogeneity during the progression to advanced, AR-negative prostate cancer [scATAC-seq]
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