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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.

Oncogene
|April 21, 2001
PubMed

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.

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