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Updated: Nov 18, 2025

Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
ELOVL5 Is a Critical and Targetable Fatty Acid Elongase in Prostate Cancer
Margaret M Centenera1,2,3, Julia S Scott1,2,3, Jelle Machiels4
1University of Adelaide Medical School, Adelaide, SA, Australia.
Abstract:
The androgen receptor (AR) is the key oncogenic driver of prostate cancer, and despite implementation of novel AR targeting therapies, outcomes for metastatic disease remain dismal. There is an urgent need to better understand androgen-regulated cellular processes to more effectively target the AR dependence of prostate cancer cells through new therapeutic vulnerabilities. Transcriptomic studies have consistently identified lipid metabolism as a hallmark of enhanced AR signaling in prostate cancer, yet the relationship between AR and the lipidome remains undefined. Using mass spectrometry-based lipidomics, this study reveals increased fatty acyl chain length in phospholipids from prostate cancer cells and patient-derived explants as one of the most striking androgen-regulated changes to lipid metabolism. Potent and direct AR-mediated induction of ELOVL fatty acid elongase 5 (ELOVL5), an enzyme that catalyzes fatty acid elongation, was demonstrated in prostate cancer cells, xenografts, and clinical tumors. Assessment of mRNA and protein in large-scale data sets revealed ELOVL5 as the predominant ELOVL expressed and upregulated in prostate cancer compared with nonmalignant prostate. ELOVL5 depletion markedly altered mitochondrial morphology and function, leading to excess generation of reactive oxygen species and resulting in suppression of prostate cancer cell proliferation, 3D growth, and in vivo tumor growth and metastasis. Supplementation with the monounsaturated fatty acid cis-vaccenic acid, a direct product of ELOVL5 elongation, reversed the oxidative stress and associated cell proliferation and migration effects of ELOVL5 knockdown. Collectively, these results identify lipid elongation as a protumorigenic metabolic pathway in prostate cancer that is androgen-regulated, critical for metastasis, and targetable via ELOVL5. SIGNIFICANCE: This study identifies phospholipid elongation as a new metabolic target of androgen action that is critical for prostate tumor metastasis.
Insights
Androgen receptor (AR) signaling in prostate cancer drives increased fatty acid chain length via ELOVL5, promoting tumor growth and metastasis. Targeting this lipid metabolism pathway offers a new therapeutic vulnerability for advanced prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Metabolic Research
Background:
- Androgen receptor (AR) is a key driver in prostate cancer, but metastatic outcomes remain poor.
- Understanding AR-regulated cellular processes is crucial for developing new therapies.
- Lipid metabolism is a known hallmark of AR signaling, but its specific role is undefined.
Purpose of the Study:
- To define the relationship between AR signaling and the lipidome in prostate cancer.
- To investigate the role of fatty acid elongation in AR-driven prostate cancer.
- To identify novel therapeutic targets within AR-regulated metabolic pathways.
Main Methods:
- Mass spectrometry-based lipidomics to analyze lipid profiles.
- Investigated the induction of ELOVL fatty acid elongase 5 (ELOVL5) by AR.
- Assessed ELOVL5 expression in prostate cancer cells, xenografts, and clinical samples.
- Studied the effects of ELOVL5 depletion and cis-vaccenic acid supplementation.
Main Results:
- Prostate cancer cells exhibit increased phospholipid fatty acyl chain length, regulated by AR.
- AR directly induces ELOVL5, which is upregulated in prostate cancer.
- ELOVL5 depletion impairs mitochondrial function, increases reactive oxygen species, and suppresses tumor growth and metastasis.
- Supplementation with cis-vaccenic acid reversed the effects of ELOVL5 knockdown.
Conclusions:
- Phospholipid elongation via ELOVL5 is a protumorigenic, AR-regulated metabolic pathway in prostate cancer.
- ELOVL5 is critical for tumor growth, metastasis, and is a potential therapeutic target.
- Targeting lipid elongation presents a novel strategy for treating metastatic prostate cancer.
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