Related Experiment Video
Updated: Nov 23, 2025

An Adipocyte Cell Culture Model to Study the Impact of Protein and Micro-RNA Modulation on Adipocyte Function
Published on: May 4, 2021
ACSS3 represses prostate cancer progression through downregulating lipid droplet-associated protein PLIN3
Lijie Zhou1,2, Zhengshuai Song3, Junyi Hu1,2
1Department of Urology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.
Abstract:
Current endocrine therapy for prostate cancer (PCa) mainly inhibits androgen/androgen receptor (AR) signaling. However, due to increased intratumoural androgen synthesis and AR variation, PCa progresses to castration-resistant prostate cancer (CRPC), which ultimately becomes resistant to endocrine therapy. A search for new therapeutic perspectives is urgently needed. Methods: By screening lipid metabolism-related gene sets and bioinformatics analysis in prostate cancer database, we identified the key lipid metabolism-related genes in PCa. Bisulfite genomic Sequence Polymerase Chain Reaction (PCR) (BSP) and Methylation-Specific Polymerase Chain Reaction (PCR) (MSP) were preformed to detect the promoter methylation of ACSS3. Gene expression was analyzed by qRT-PCR, Western blotting, IHC and co-IP. The function of ACSS3 in PCa was measured by CCK-8, Transwell assays. LC/MS, Oil Red O assays and TG and cholesterol measurement assays were to detect the levels of TG and cholesterol in cells. Resistance to Enzalutamide in C4-2 ENZR cells was examined in a xenograft tumorigenesis model in vivo. Results: We found that acyl-CoA synthetase short chain family member 3 (ACSS3) was downregulated and predicted a poor prognosis in PCa. Loss of ACSS3 expression was due to gene promoter methylation. Restoration of ACSS3 expression in PCa cells significantly reduced LD deposits, thus promoting apoptosis by increasing endoplasmic reticulum (ER) stress, and decreasing de novo intratumoral androgen synthesis, inhibiting CRPC progression and reversing Enzalutamide resistance. Mechanistic investigations demonstrated that ACSS3 reduced LD deposits by regulating the stability of the LD coat protein perilipin 3 (PLIN3). Conclusions: Our study demonstrated that ACSS3 represses prostate cancer progression through downregulating lipid droplet-associated protein PLIN3.
Insights
Acyl-CoA synthetase short chain family member 3 (ACSS3) suppresses prostate cancer (PCa) progression by reducing lipid deposits and inhibiting androgen synthesis. Restoring ACSS3 expression can overcome resistance to endocrine therapies like Enzalutamide.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Endocrine therapy for prostate cancer (PCa) faces resistance due to intratumoral androgen synthesis and AR alterations, leading to castration-resistant prostate cancer (CRPC).
- New therapeutic strategies are crucial to overcome treatment resistance in advanced PCa.
Purpose of the Study:
- To identify key lipid metabolism-related genes in PCa and investigate the role of ACSS3 in PCa progression and endocrine therapy resistance.
Main Methods:
- Bioinformatic analysis of lipid metabolism genes in PCa databases.
- Detection of ACSS3 promoter methylation using BSP and MSP.
- Assessment of ACSS3 expression via qRT-PCR, Western blotting, and IHC.
- Functional assays (CCK-8, Transwell) and lipid level measurements (LC/MS, Oil Red O).
- In vivo xenograft models to evaluate Enzalutamide resistance.
Main Results:
- ACSS3 was found to be downregulated in PCa, correlating with poor prognosis, and its downregulation resulted from gene promoter methylation.
- Restoring ACSS3 reduced lipid droplet (LD) deposits, increased apoptosis via ER stress, decreased intratumoral androgen synthesis, and inhibited CRPC progression.
- ACSS3 reversed Enzalutamide resistance in a xenograft model.
- ACSS3 exerts its function by regulating the stability of perilipin 3 (PLIN3), a lipid droplet coat protein.
Conclusions:
- ACSS3 acts as a tumor suppressor in prostate cancer.
- ACSS3 represses PCa progression by downregulating PLIN3, thereby reducing lipid droplet accumulation.
- Targeting ACSS3 or its related pathways may offer a novel therapeutic approach for overcoming CRPC and Enzalutamide resistance.
More Related Videos
Related Concept Videos
The JAK-STAT Signaling Pathway
Abnormal Proliferation
Regulation of Nuclear Protein Sorting

