Study / S3IZINVTH2022-11-30

Extensive androgen receptor enhancer heterogeneity in primary prostate cancers underlies transcriptional diversity and metastatic potential

Jeroen Kneppers, Tesa M. Severson, Joseph C. Siefert, Pieter Schol, Stacey E. P. Joosten et al.

About this study

Androgen receptor (AR) drives prostate cancer (PCa) development and progression. AR chromatin binding profiles are highly plastic and form recurrent programmatic changes that differentiate disease stages, subtypes and patient outcomes. While prior studies focused on concordance between patient subgroups, inter-tumor heterogeneity of AR enhancer selectivity remains unexplored. Here we report high levels of AR chromatin binding heterogeneity in human primary prostate tumors, that overlap with heterogeneity observed in healthy prostate epithelium. Such heterogeneity has functional consequences, as somatic mutations converge on commonly-shared AR sites in primary over metastatic tissues. In contrast, less-frequently shared AR sites associate strongly with AR-driven gene expression, while such heterogeneous AR enhancer usage also distinguishes patients’ outcome. These findings indicate that epigenetic heterogeneity in primary disease is directly informative for risk of biochemical relapse. Cumulatively, our results illustrate a high level of AR enhancer heterogeneity in primary PCa driving differential expression and clinical impact.

Full author list & citation

Jeroen Kneppers, Tesa M. Severson, Joseph C. Siefert, Pieter Schol, Stacey E. P. Joosten, Ivan Pak Lok Yu, Chia-Chi Flora Huang, Tunç Morova, Umut Berkay Altıntaş, Claudia Giambartolomei, Ji-Heui Seo, Sylvan C. Baca, Isa Carneiro, Eldon Emberly, Bogdan Pasaniuc, Carmen Jerónimo, Rui Henrique, Matthew L. Freedman, Lodewyk F. A. Wessels, Nathan A. Lack, Andries M. Bergman, Wilbert Zwart. Extensive androgen receptor enhancer heterogeneity in primary prostate cancers underlies transcriptional diversity and metastatic potential. 2022-11-30. https://doi.org/10.1038/s41467-022-35135-2

Experiments 2

E2IMJLMJL

Additional randomized ARBS capture-STARR-seq validation library

The flagged paper randomly sampled 2,495 ARBS across its ranked universe for an additional capture-STARR-seq library in LNCaP cells. The deposited public data contain two vehicle RNA replicates and one DNA input track; the table reports their interval summaries alongside the paper's active/inactive labels.

Targeted / Cap-STARR-seqHumanhg19
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E7UGOX7XT

LNCaP ARBS capture-STARR-seq: DHT versus EtOH vehicle

Published 3-replicate capture-STARR-seq assay of androgen receptor binding-site fragments in LNCaP cells, with 10 nM DHT or EtOH vehicle for 4 h. The table summarizes all 3,230 GSE151064 ARBS intervals and adds their overlap with the flagged paper's ranked ARBS universe.

Targeted / Cap-STARR-seqHumanhg19
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Raw source data 20 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 20 files (ZIP)GSE151064/filelist.txtGSE151064/GSE151064_constitutive.bed.gzGSE151064/GSE151064_family.soft.gzGSE151064/GSE151064_inactive.bed.gzGSE151064/GSE151064_induced.bed.gzGSE151064/GSM4565628_starrseq-lncap-dht-1-norm-extended-reads.bigWigGSE151064/GSM4565629_starrseq-lncap-dht-2-norm-extended-reads.bigWigGSE151064/GSM4565630_starrseq-lncap-dht-3-norm-extended-reads.bigWigGSE151064/GSM4565631_starrseq-lncap-etoh-1-norm-extended-reads.bigWigGSE151064/GSM4565632_starrseq-lncap-etoh-2-norm-extended-reads.bigWigGSE151064/GSM4565633_starrseq-lncap-etoh-3-norm-extended-reads.bigWigGSE151064/GSM4565634_starrseq-lncap-lib3-norm-extended-reads.bigWigGSE217319/filelist.txtGSE217319/GSE217319_family.soft.gzGSE217319/GSM6711425_LNCaP.Capture.rep1.bwGSE217319/GSM6711426_LNCaP.Capture.rep2.bwGSE217319/GSM6711427_LNCaP.Capture.input.bwnature_supplements/source_data.xlsxnature_supplements/supplementary_data_1_oligos.xlsxnature_supplements/supplementary_information.pdf

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