国产热热热精品,亚洲视频久久】日韩,三级婷婷在线久久,99人妻精品视频,精品九热人人肉肉在线,AV东京热一区二区,91po在线视频观看,久久激情宗合,青青草黄色手机视频

Science and Health

Researchers identify protein that improves DNA repair

(Xinhua)
Updated: 2011-06-17 09:53
Large Medium Small

WASHINGTON - Cells in the human body are constantly being exposed to stress from environmental chemicals or errors in routine cellular processes.

While stress can cause damage, it can also provide the stimulus for undoing the damage. New research by a team of scientists at the University of Rochester has unveiled an important new mechanism that allows cells to recognize when they are under stress and prime the DNA repair machinery to respond to the threat of damage.

Their findings will be published Friday in journal Science.

The scientists, led by biologists Vera Gorbunova and Andrei Seluanov, focused on the most dangerous type of DNA damage - double strand breaks. Unrepaired, this type of damage can lead to premature aging and cancer. They studied how oxidative stress affects efficiency of DNA repair. Oxidative stress occurs when the body is unable to neutralize the highly-reactive molecules, which are typically produced during routine cellular activities.

The research team found that human cells undergoing oxidative stress synthesized more of a protein called SIRT6. By increasing SIRT6 levels, cells were able to stimulate their ability to repair double strand breaks. When the cells were treated with a drug that inactivated SIRT6, DNA repair came to a halt, thus confirming the role of SIRT6 in DNA repair. Gorbunova notes that the SIRT6 protein is structurally related to another protein, SIR2, which has been shown to extend lifespan in multiple model organisms.

"SIRT6 also affects DNA repair when there is no oxidative stress," explains Gorbunova. "It's just that the effect is magnified when the cells are challenged with even small amounts of oxidative stress."

SIRT6 allows the cells to be economical with their resources, priming the repair enzymes only when there is damage that needs to be repaired. Thus SIRT6 may be a master regulator that coordinates stress and DNA repair activities, according to Gorbunova.

分享按鈕
科技| 独山县| 永吉县| 盖州市| 乌海市| 英超| 眉山市| 新乡市| 嘉定区| 石家庄市| 金秀| 布拖县| 高唐县| 长治县| 白银市| 九龙县| 即墨市| 通道| 应城市| 柏乡县| 富源县| 勃利县| 麦盖提县| 固始县| 中宁县| 修水县| 禄丰县| 台安县| 蕲春县| 灵丘县| 恩施市| 同仁县| 上杭县| 临泽县| 大洼县| 湛江市| 甘谷县| 鄂尔多斯市| 滦平县| 普陀区| 灵山县|