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Updated: Jun 17, 2026

Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
Metastasis-associated protein 1 rewires prostate cancer transcriptomes via direct RNA interactions governing gene
Guanlin Qu1, Fuhao Li1, Bin Wu1
1Department of Urology, The Second Affiliated Hospital of Anhui Medical University, China.
Abstract:
ObjectiveThis study investigated whether metastasis-associated protein 1 (MTA1) acts as an RNA-binding protein to directly regulate gene expression and alternative splicing in prostate cancer, thereby exploring its dual transcriptional and post-transcriptional roles.MethodsMTA1-stable-knockdown PC-3 cells were subjected to RNA sequencing and formaldehyde RNA immunoprecipitation sequencing to characterize the MTA1-RNA interactome and its functional significance.ResultsMTA1 knockdown dysregulated 1248 genes and 2367 alternative splicing events. Differentially expressed genes were enriched in extracellular matrix remodeling, PI3K-Akt signaling, and hypoxia-response pathways, whereas alternatively spliced genes were associated with spliceosome and RNA-processing pathways. Formaldehyde RNA immunoprecipitation sequencing confirmed MTA1 binding to GC-rich RNA motifs, with significant overlap between MTA1-bound targets and dysregulated genes or splicing events. Representative findings included MTA1 binding to the 3' untranslated region of COL6A1, resulting in its downregulation, and regulation of SNHG17 splicing, indicating direct roles in RNA stability and splicing regulation.ConclusionMTA1 functions as both an epigenetic modulator and an RNA-binding protein in prostate cancer, directly regulating RNA networks that promote tumor progression. These findings reveal novel RNA-mediated oncogenic mechanisms and highlight the therapeutic potential of MTA1 in prostate cancer.
Insights
Metastasis-associated protein 1 (MTA1) acts as an RNA-binding protein in prostate cancer, directly regulating gene expression and splicing. This reveals novel RNA-mediated oncogenic mechanisms and therapeutic potential for MTA1.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- Metastasis-associated protein 1 (MTA1) is implicated in cancer progression.
- Its role in regulating gene expression and alternative splicing in prostate cancer remains incompletely understood.
- Investigating MTA1's dual transcriptional and post-transcriptional functions is crucial for understanding prostate cancer development.
Purpose of the Study:
- To determine if MTA1 functions as an RNA-binding protein in prostate cancer.
- To explore MTA1's direct regulation of gene expression and alternative splicing.
- To elucidate MTA1's combined transcriptional and post-transcriptional roles in prostate cancer.
Main Methods:
- Utilized stable MTA1-knockdown PC-3 cells for RNA sequencing.
- Employed formaldehyde RNA immunoprecipitation sequencing (RIP-seq) to identify MTA1-RNA interactions.
- Analyzed differentially expressed and alternatively spliced genes and MTA1-bound RNA targets.
Main Results:
- MTA1 knockdown altered 1248 genes and 2367 alternative splicing events.
- Dysregulated genes were linked to extracellular matrix remodeling, PI3K-Akt signaling, and hypoxia.
- MTA1 directly binds GC-rich RNA motifs, regulating COL6A1 expression and SNHG17 splicing.
Conclusions:
- MTA1 acts as both an epigenetic modulator and an RNA-binding protein in prostate cancer.
- MTA1 directly controls RNA networks that drive tumor progression.
- These findings uncover new RNA-mediated oncogenic mechanisms and suggest MTA1 as a therapeutic target.
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