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Published on: October 9, 2016
Isoform-specific Activities of Androgen Receptor and its Splice Variants in Prostate Cancer Cells
Harika Nagandla1, Matthew J Robertson1, Vasanta Putluri2
1Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, USA.
Abstract:
Androgen receptor (AR) signaling continues to drive castration-resistant prostate cancer (CRPC) in spite of androgen deprivation therapy (ADT). Constitutively active shorter variants of AR, lacking the ligand binding domain, are frequently expressed in CRPC and have emerged as a potential mechanism for prostate cancer to escape ADT. ARv7 and ARv567es are 2 of the most commonly detected variants of AR in clinical samples of advanced, metastatic prostate cancer. It is not clear if variants of AR merely act as weaker substitutes for AR or can mediate unique isoform-specific activities different from AR. In this study, we employed LNCaP prostate cancer cell lines with inducible expression of ARv7 or ARv567es to delineate similarities and differences in transcriptomics, metabolomics, and lipidomics resulting from the activation of AR, ARv7, or ARv567es. While the majority of target genes were similarly regulated by the action of all 3 isoforms, we found a clear difference in transcriptomic activities of AR versus the variants, and a few differences between ARv7 and ARv567es. Some of the target gene regulation by AR isoforms was similar in the VCaP background as well. Differences in downstream activities of AR isoforms were also evident from comparison of the metabolome and lipidome in an LNCaP model. Overall our study implies that shorter variants of AR are capable of mediating unique downstream activities different from AR and some of these are isoform specific.
Insights
Shorter androgen receptor (AR) variants, like ARv7 and ARv567es, drive castration-resistant prostate cancer (CRPC) by mediating unique activities distinct from full-length AR, impacting cancer treatment resistance.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Androgen receptor (AR) signaling drives castration-resistant prostate cancer (CRPC) despite androgen deprivation therapy (ADT).
- Shorter AR variants (ARv7, ARv567es), lacking the ligand-binding domain, are expressed in CRPC and may enable cancer cells to evade ADT.
- It remains unclear if these AR variants function as diminished versions of AR or possess distinct, isoform-specific activities.
Purpose of the Study:
- To investigate the similarities and differences in transcriptomic, metabolomic, and lipidomic profiles induced by the activation of full-length AR, ARv7, and ARv567es.
- To determine if AR variants mediate unique downstream activities distinct from full-length AR.
Main Methods:
- Utilized LNCaP prostate cancer cell lines engineered for inducible expression of AR, ARv7, or ARv567es.
- Performed comparative analyses of transcriptomics, metabolomics, and lipidomics across cells expressing each AR isoform.
- Validated some findings in a VCaP cell line model.
Main Results:
- Identified largely similar gene regulation by all three AR isoforms, but also detected distinct transcriptomic activities between full-length AR and the variants.
- Observed specific differences in gene regulation between ARv7 and ARv567es.
- Metabolomic and lipidomic analyses in LNCaP cells revealed further differences in downstream activities mediated by the AR isoforms.
Conclusions:
- Shorter AR variants are not merely weaker substitutes for full-length AR.
- These AR variants possess the capability to mediate unique downstream activities.
- Some of these unique activities are specific to individual AR variants, suggesting distinct functional roles in CRPC progression.
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