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Two-way crosstalk between BER and c-NHEJ repair pathway is mediated by Pol-β and Ku70
Wen Xia1, Shusheng Ci1, Menghan Li1
1Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, China.
Abstract:
Multiple DNA repair pathways may be involved in the removal of the same DNA lesion caused by endogenous or exogenous agents. Although distinct DNA repair machinery fulfill overlapping roles in the repair of DNA lesions, the mechanisms coordinating different pathways have not been investigated in detail. Here, we show that Ku70, a core protein of nonhomologous end-joining (NHEJ) repair pathway, can directly interact with DNA polymerase-β (Pol-β), a central player in the DNA base excision repair (BER), and this physical complex not only promotes the polymerase activity of Pol-β and BER efficiency but also enhances the classic NHEJ repair. Moreover, we find that DNA damages caused by methyl methanesulfonate (MMS) or etoposide promote the formation of Ku70-Pol-β complexes at the repair foci. Furthermore, suppression of endogenous Ku70 expression by small interfering RNA reduces BER efficiency and leads to higher sensitivity to MMS and accumulation of the DNA strand breaks. Similarly, Pol-β knockdown impairs total-NHEJ capacity but only has a slight influence on alternative NHEJ. These results suggest that Pol-β and Ku70 coordinate 2-way crosstalk between the BER and NHEJ pathways.-Xia, W., Ci, S., Li, M., Wang, M., Dianov, G. L., Ma, Z., Li, L., Hua, K., Alagamuthu, K. K., Qing, L., Luo, L., Edick, A. M., Liu, L., Hu, Z., He, L., Pan, F., Guo, Z. Two-way crosstalk between BER and c-NHEJ repair pathway is mediated by Pol-β and Ku70.
Insights
Ku70, a protein in DNA repair pathway NHEJ, interacts with Pol-β from BER pathway. This interaction enhances both DNA repair pathways, suggesting a coordinated crosstalk between BER and NHEJ.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- Multiple DNA repair pathways exist for DNA lesions.
- Mechanisms coordinating these distinct pathways are not fully understood.
Purpose of the Study:
- Investigate the coordination between DNA repair pathways.
- Elucidate the role of Ku70 and DNA polymerase-β (Pol-β) in this process.
Main Methods:
- Protein interaction studies (Ku70-Pol-β complex formation).
- Assays for DNA repair efficiency (BER and NHEJ).
- Gene silencing using small interfering RNA (siRNA) and knockdown.
Main Results:
- Ku70 directly interacts with Pol-β, enhancing both BER and NHEJ.
- DNA damage (MMS, etoposide) promotes Ku70-Pol-β complex formation.
- Ku70 suppression reduces BER efficiency and increases sensitivity to MMS.
- Pol-β knockdown impairs NHEJ capacity.
Conclusions:
- Ku70 and Pol-β mediate a two-way crosstalk between BER and NHEJ pathways.
- This interaction is crucial for efficient DNA repair and genomic stability.
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