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Updated: Jan 13, 2026

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
TRMT112 drives a tumor growth and metastasis-promoting program in triple-negative breast cancer
Amr R Elhamamsy1, Brandon J Metge1, Mohamed H Elbahoty1
1Department of Pathology, University of Alabama at Birmingham, Birmingham, AL, USA.
Abstract:
Ribosomal RNA Modifying Proteins (RRMPs) are integral to ribosome biogenesis, executing post-transcriptional modifications that influence translation fidelity and efficiency. Dysregulation of RRMPs has been increasingly implicated in cancer progression, yet their collective role across malignancies remains largely unexplored. Here, we performed a multi-omics analysis of 22 RRMPs across diverse cancer types using The Cancer Genome Atlas, the Molecular Taxonomy of Breast Cancer International Consortium, and additional high-throughput datasets. Our analysis revealed widespread genomic alterations and transcriptional dysregulation of RRMPs across malignancies, with distinct expression patterns in breast cancer subtypes. Notably, Triple-Negative Breast Cancer (TNBC) exhibited the highest RRMPs enrichment, which correlated with increased genomic instability including elevated tumor mutational burden and aneuploidy scores, and poor survival outcomes. Among the RRMPs, tRNA methyltransferase activator subunit 11-2 (TRMT112) emerged as a key regulator of tumor progression. Functional assays demonstrated that TRMT112 knockdown in TNBC cells significantly reduced proliferation, migration, invasion, and metastatic potential, whereas its overexpression enhanced these tumorigenic properties. Polysome profiling and RNA sequencing of actively translated transcripts revealed that TRMT112 reprograms the translational landscape by promoting pro-metastatic and stromal remodeling pathways while suppressing immune-related processes. In vivo studies using an orthotopic breast cancer model further confirmed that TRMT112 depletion impairs tumor growth and reduces metastatic burden. Collectively, our findings establish RRMPs as critical modulators of cancer progression and identify TRMT112 as a key driver of aggressive phenotypes in TNBC. The dysregulation of TRMT112 across breast cancer subtypes highlights its potential as both a prognostic biomarker and a therapeutic target. These insights provide a mechanistic foundation for future interventions aimed at targeting TRMT112-driven translational programs in aggressive breast cancer.
Insights
Ribosomal RNA Modifying Proteins (RRMPs) drive cancer progression. The study identifies TRMT112 as a key driver in Triple-Negative Breast Cancer (TNBC), highlighting its potential as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Ribosomal RNA Modifying Proteins (RRMPs) are crucial for ribosome biogenesis and translation.
- Dysregulation of RRMPs is linked to cancer, but their collective role is understudied.
Purpose of the Study:
- To investigate the role of 22 RRMPs across various cancer types.
- To identify specific RRMPs involved in cancer progression, particularly in breast cancer subtypes.
Main Methods:
- Multi-omics analysis of 22 RRMPs using TCGA, METABRIC, and other datasets.
- Functional assays (knockdown/overexpression) of TRMT112 in TNBC cells.
- Polysome profiling and RNA sequencing.
- In vivo orthotopic breast cancer models.
Main Results:
- Widespread genomic and transcriptional dysregulation of RRMPs observed across malignancies.
- Triple-Negative Breast Cancer (TNBC) showed highest RRMP enrichment, correlating with genomic instability and poor survival.
- TRMT112 knockdown reduced TNBC cell proliferation, migration, and invasion; overexpression enhanced these.
- TRMT112 reprogramming of translation suppressed immune pathways and promoted pro-metastatic/stromal remodeling pathways.
- TRMT112 depletion impaired tumor growth and metastasis in vivo.
Conclusions:
- RRMPs are critical modulators of cancer progression.
- TRMT112 is a key driver of aggressive TNBC phenotypes.
- TRMT112 is a potential prognostic biomarker and therapeutic target for aggressive breast cancer.
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