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Updated: Jun 3, 2025

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Tumorigenesis Caused by Aberrant Expression of GANP, a Central Component in the Mammalian TREX-2 Complex-Lessons from
Andri Rezano1, Naomi Gondo2, Yasuhiro Sakai3
1Department of Biomedical Sciences, Division of Cell Biology, Faculty of Medicine, Universitas Padjadjaran, Sumedang 45363, West Java, Indonesia.
Abstract:
DNA is frequently damaged by genotoxic stresses such as ionizing radiation, reactive oxygen species, and nitrogen species. DNA damage is a key contributor to cancer initiation and progression, and thus the precise and timely repair of these harmful lesions is required. Recent studies revealed transcription as a source of genome instability, and transcription-coupled DNA damage has been a focus in cancer research. Impaired mRNA export is closely related to DNA damage through R-loop formation. The molecular machineries of transcription-coupled DNA damage have been extensively analyzed in Saccharomyces cerevisiae. However, the molecular basis of these phenomena in higher eukaryotes remains elusive. In this review, we focus on the relationship between deregulated mRNA export through the transcription-export-2 (TREX-2) complex and cancer development. Particularly, the expression of germinal center-associated nuclear protein (GANP), a molecular scaffold in the TREX-2 complex, is highly associated with tumorigenesis in mice and humans. Although the deregulated expression of other components in the TREX-2 complex might affect cancer development, we have directly demonstrated the significance of GANP in tumorigenesis using genetically modified mice. Additionally, we describe recent evidence for medical applications demonstrating that the downregulation of the other components may be a good candidate for a chemotherapeutic target in terms of reducing the side effects.
Insights
DNA damage and cancer are linked to impaired mRNA export via the transcription-export-2 (TREX-2) complex. Germinal center-associated nuclear protein (GANP) within TREX-2 is crucial for tumorigenesis, offering potential therapeutic targets.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- DNA damage from genotoxic stress is a key factor in cancer.
- Transcription can cause DNA damage, particularly in higher eukaryotes.
- Impaired mRNA export, linked to R-loop formation, contributes to DNA damage.
Purpose of the Study:
- To review the link between deregulated mRNA export via the transcription-export-2 (TREX-2) complex and cancer.
- To highlight the role of germinal center-associated nuclear protein (GANP) in tumorigenesis.
- To explore potential chemotherapeutic targets related to TREX-2 components.
Main Methods:
- Review of recent studies on transcription-coupled DNA damage.
- Analysis of the TREX-2 complex and its role in mRNA export.
- Examination of GANP expression in relation to tumorigenesis in mice and humans.
Main Results:
- Deregulation of the TREX-2 complex, particularly GANP, is associated with cancer development.
- GANP's significance in tumorigenesis is demonstrated in genetically modified mice.
- Downregulation of other TREX-2 components shows potential as a chemotherapeutic strategy.
Conclusions:
- The TREX-2 complex, especially GANP, plays a significant role in cancer initiation and progression.
- Targeting TREX-2 components offers a promising avenue for cancer therapy with potentially reduced side effects.
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