| Literature DB >> 24378750 |
Michaela Medová1, Daniel M Aebersold2, Yitzhak Zimmer3.
Abstract
Radiation therapy remains an imperative treatment modality for numerous malignancies. Enduring significant technical achievements both on the levels of treatment planning and radiation delivery have led to improvements in local control of tumor growth and reduction in healthy tissue toxicity. Nevertheless, resistance mechanisms, which presumably also involve activation of DNA damage response signaling pathways that eventually may account for loco-regional relapse and consequent tumor progression, still remain a critical problem. Accumulating data suggest that signaling via growth factor receptor tyrosine kinases, which are aberrantly expressed in many tumors, may interfere with the cytotoxic impact of ionizing radiation via the direct activation of the DNA damage response, leading eventually to so-called tumor radioresistance. The aim of this review is to overview the current known data that support a molecular crosstalk between the hepatocyte growth factor receptor tyrosine kinase MET and the DNA damage response. Apart of extending well established concepts over MET biology beyond its function as a growth factor receptor, these observations directly relate to the role of its aberrant activity in resistance to DNA damaging agents, such as ionizing radiation, which are routinely used in cancer therapy and advocate tumor sensitization towards DNA damaging agents in combination with MET targeting.Entities:
Year: 2013 PMID: 24378750 PMCID: PMC3980615 DOI: 10.3390/cancers6010001
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639
Observations linking RTK systems to cellular DDR.
| DDR-related protein | RTK | Mode of modulation |
|---|---|---|
| DNA-PK (dsDNA breaks repair by non-homologous end-joining) | EGFR | physical interaction [ |
| ERCC1 (ssDNA breaks repair by nucleotide excision) | EGFR | MAPK-dependent upregulation [ |
| XRCC1 (ssDNA breaks repair by base excision) | EGFR | MAPK-dependent upregulation [ |
| BRCA1 (dsDNA breaks repair by homologous recombination) | EGFR | cytoplasmic sequestration upon EGFRi [ |
| ATM (dsDNA damage breaks sensing) | IGF-1R, MET | lower levels in IGF-1R antisense-expressing cells [ |
| RAD51 (dsDNA breaks repair by homologous recombination) | IGF-1R, MET | intracellular trafficking controlled by IGF-1R [ |
| BRCA2 (dsDNA breaks repair by homologous recombination) | MET | interaction with RAD51 hindered by METi [ |
| γH2AX (dsDNA damage breaks sensing) | IGF-1R, MET | sustained γH2AX expression upon IGF-1R [ |
Figure 1MET-downstream signaling activated by HGF stimulation prior to DNA damage and involved in MET-driven protection of cancer cell from DDAs.
Figure 2DDR sensors, mediators and effectors that have been shown to be modulated by MET signaling and/or MET inhibition alone or in combination with DDAs (full lines—direct links, broken lines—links that have not been proven direct).