‘Chaperone’ enzyme could help cells tolerate cancer-causing DNA damage
January 19th, 2011 - 12:14 pm ICT by ANIWashington, Jan 19 (ANI): University of North Carolina researchers have found how a ‘chaperone’ enzyme has a major role in cells’ ability to tolerate the DNA damage that leads to cancer and other diseases.
The enzyme, known as Rad18, detects a protein called DNA polymerase eta (Pol eta) and accompanies it to the sites of sunlight-induced DNA damage, enabling accurate repair.
When Pol eta is not present, alternative error-prone polymerases take its place-a process that leads to DNA mutations often found in cancer cells.
In one known example, faulty DNA repair due to Pol eta deficiency is responsible for the genetic disease xeroderma pigmentosum-variant, which makes patients extremely susceptible to skin cancers caused by exposure to sunlight.
However, scientists did not know how the cells selected the correct DNA Polymerase for error-free repair of each type of DNA damage.
“We found that the mechanism that promotes the ‘chaperone’ enzyme to recruit Pol eta to sites of DNA damage is managed by another signaling protein termed ‘Cdc7′ which we know is essential to normal regulation of the cellular lifecycle,” said lead author Cyrus Vaziri.
Thus cells employ Cdc7 to ensure accurate DNA repair during the stage of their lifecycle that is most vulnerable to cancer-causing mutations.
According to Vaziri, the dual role that Cdc7 plays in the cell lifecycle and DNA repair offers a promising target for potential cancer therapies.
“We know that cancer cells have high levels of Cdc7 activity and can evade some DNA-damaging therapies such as cis-Platinum through Rad18 and Pol eta activity. We may be able to target this pathway in platinum-resistant tumors to prevent DNA repair and enhance cancer cell killing by platinating agents,” he said.
The study was published in the Journal of Cell Biology. (ANI)
- Why incidence of skin cancers is common in people with a genetic disorder - Jun 24, 2010
- Study offers potential new targets for novel anti-HIV drugs - Mar 26, 2011
- Boffins discover key enzyme in DNA repair pathway - Jul 30, 2010
- Enzyme crucial to DNA replication may be potent anti-cancer drug target - Apr 15, 2011
- Breast-cancer protein purified - Aug 23, 2010
- Scripps finding on DNA repair brings hope to cancer patients - Mar 28, 2011
- Protein that promotes cancer found - Aug 21, 2010
- Cancer-promoting protein discovered (Lead) - Aug 21, 2010
- Protein that protects cancer cells from chemo, radiation therapy found - Mar 25, 2011
- Scientists visually record human DNA repair process - Jan 30, 2009
- New personalized therapy to 'fool cancer cells into killing themselves' - Mar 01, 2011
- 'Cell explosions' can trigger instant cancers - Jan 07, 2011
- Widely used arthritis pill shows promise against skin cancer - Dec 03, 2010
- 'Guardian' protein prevents DNA damage during replication - Aug 02, 2010
- Researchers unravel protein role in repair of cancer damaged cell - Jan 07, 2009
Tags: accurate repair, cancer cell, cancer cells, cancer therapies, chaperone, dna damage, dna mutations, dna polymerase, dna repair, dual role, eta, faulty dna, genetic disease, jan 19, journal of cell biology, lifecycle, north carolina researchers, skin cancers, target, university of north carolina