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Published on: April 16, 2021
Importin KPNA2, NBS1, DNA repair and tumorigenesis
Shu-Chun Teng1, Kou-Juey Wu, Shun-Fu Tseng
1Department of Microbiology, College of Medicine, National Taiwan University, No. 1 Sec. 1 Jen-Ai Road, Taipei 10063, Taiwan. scteng@ha.mc.ntu.edu.tw
Abstract:
During the past 20 years, the MRE11-RAD50-NBS1 complex has become an increasingly important focus in basic and clinical cancer research. One main conceptual step forward was made with the discovery of NBS1 and the understanding of its critical pathophysiological role in Nijmegen breakage syndrome. Major efforts were carried out to define the role in DNA repair of this complex. Recently, basic research has continuously extended our understanding of the complexity of the NBS1 complex. MRE11-RAD50-NBS1 complex can no longer be viewed as having a single role in DNA damage repair since it also serves as a sensor and a mediator in cell cycle checkpoint signaling. Meanwhile, studies have challenged the concept that NBS1 only functions as a tumor suppressor in preserving genome integrity in the nucleus. It may also provide an oncogenic role in the cytoplasm which is associated with the PI3-kinase/AKT-activation pathway. Consistent with this aspect, a growing body of clinical evidence suggests that NBS1 contains a deleterious character that depends on its subcellular localization. This review focuses on recent experimental evidences demonstrating how NBS1 is translocated into the nucleus by an importin KPNA2 which mediates NBS1 subcellular localization and the functions of the NBS1 complex in tumorigenesis.
Insights
The NBS1 complex plays dual roles in cancer, acting as a tumor suppressor in the nucleus and promoting oncogenesis in the cytoplasm. Its subcellular localization, influenced by importin KPNA2, is critical for its function in tumorigenesis.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- The MRE11-RAD50-NBS1 complex is crucial in DNA repair and cell cycle checkpoint signaling.
- NBS1's role extends beyond tumor suppression, with potential oncogenic functions in the cytoplasm.
- Subcellular localization of NBS1 influences its role in cancer development.
Purpose of the Study:
- To review recent evidence on NBS1's dual role in tumorigenesis.
- To highlight the mechanism of NBS1 nuclear translocation mediated by importin KPNA2.
- To explore the clinical implications of NBS1 subcellular localization.
Main Methods:
- Literature review of recent experimental evidence.
- Focus on studies investigating NBS1 translocation and function.
- Analysis of the role of importin KPNA2 in NBS1 localization.
Main Results:
- NBS1 exhibits context-dependent functions, acting as a tumor suppressor in the nucleus and an oncogene in the cytoplasm.
- Importin KPNA2 mediates NBS1 nuclear import, influencing its cellular functions.
- Clinical evidence suggests NBS1's detrimental effects are linked to its subcellular localization.
Conclusions:
- NBS1's subcellular localization is a key determinant of its role in cancer.
- Targeting NBS1 translocation could offer novel therapeutic strategies.
- Understanding NBS1's complex functions is vital for cancer research and treatment.
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