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Tumor specific modulation of KU70/80 DNA binding activity in breast and bladder human tumor biopsies
S Pucci1, P Mazzarelli, C Rabitti
1Institute of Experimental Medicine, CNR, Via Fosso del Cavaliere 100, 00133 Rome, Italy.
Abstract:
The Ku70/80 heterodimer is the regulatory subunit of the DNA-dependent protein kinase (DNA-PK) and its DNA-binding activity mediates DNA double-strand breaks repair. Although Ku80 was recently proposed as a caretaker gene involved in the control of genome integrity, no data are available on Ku70/80 DNA-binding activity in human tumors. Heterodimer DNA-binding activity and protein expression were assayed by electrophoretic-mobility-shift-assay (EMSA) and Western blot analysis, in nuclear and cytoplasmic extracts from eight breast, seven bladder primary tumors and three metastatic nodes from breast cancers. Corresponding normal tissues of the same patients were used as controls. Ten out of 15 tumors showed nuclear Ku-binding activity 3-10 times higher than in the normal tissues, irrespective of bladder or breast origin. Conversely, in 5/15 primary tumors and in all the metastatic nodes analysed, nuclear Ku-activity was 1.5-4.5-fold lower than in the corresponding normal tissues. Cytoplasmic heterodimer activity significantly differed between tumor and normal tissues, displaying a 2-10-fold increase in neoplastic tissues. Three different patterns combining both Ku expression and activity with tumor characteristics were identified. In low aggressive breast tumors p70/p80 proteins were expressed in tumor but not in normal tissues. The heterodimer binding-activity matched the protein levels. In non-invasive bladder carcinomas no significant differences in protein expression between tumor and the corresponding normal tissues were found, however heterodimer binding-activity was increased in tumor samples. In breast and bladder tumors, at the advanced stage and in node metastases, the binding activity was strongly reduced in tumor biopsies, however no differences were demonstrated between normal and tumor protein levels. Our results suggest a different modulation of Ku70/80 DNA-binding activity in human neoplastic tissues, possibly related to tumor progression. Findings provide further data on tissue-specific protein expression and post-translational regulation of heterodimer activity.
Insights
The Ku70/80 heterodimer
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The Ku70/80 heterodimer is crucial for DNA double-strand break repair.
- Its role in genome integrity is recognized, but its DNA-binding activity in human tumors is understudied.
- Understanding Ku70/80 activity in cancer is vital for comprehending DNA repair mechanisms in neoplastic tissues.
Purpose of the Study:
- To investigate the DNA-binding activity and protein expression of the Ku70/80 heterodimer in human breast and bladder tumors.
- To compare these levels with corresponding normal tissues to identify alterations in cancer.
- To explore potential correlations between Ku70/80 activity patterns and tumor characteristics, including aggressiveness and metastatic potential.
Main Methods:
- Electrophoretic-mobility-shift-assay (EMSA) was used to measure Ku70/80 heterodimer DNA-binding activity.
- Western blot analysis was employed to assess Ku70/80 protein expression levels.
- Nuclear and cytoplasmic extracts from primary tumors, metastatic nodes, and normal tissues were analyzed.
Main Results:
- Increased nuclear Ku-binding activity (3-10 fold) was observed in 10 out of 15 tumors compared to normal tissues.
- Reduced nuclear Ku-activity (1.5-4.5 fold) was found in 5 tumors and all metastatic nodes.
- Cytoplasmic heterodimer activity showed a significant 2-10 fold increase in neoplastic tissues.
- Distinct patterns of Ku expression and activity were identified, correlating with tumor stage and aggressiveness.
Conclusions:
- Ku70/80 DNA-binding activity is differentially modulated in human neoplastic tissues, suggesting a role in tumor progression.
- Tissue-specific protein expression and post-translational regulation influence heterodimer activity in cancer.
- Findings highlight the complex role of Ku70/80 in cancer, with potential implications for understanding DNA repair and genome stability in tumors.