Researchers discover how damaged DNA is repaired
A research group led by Waseda's Professor Hitoshi Kurumizaka and Assistant Professor Akihisa Osakabe has discovered the mechanism by which DNA damaged by ultraviolet (UV) light is recognized for repair.
2015-12-8
Waseda University
Researchers discover how damaged DNA is repaired
A research group led by Waseda's Professor Hitoshi Kurumizaka and Assistant Professor Akihisa Osakabe has discovered the mechanism by which DNA damaged by ultraviolet (UV) light is recognized for repair.
This year three scientists were awarded the Nobel Prize in Chemistry for mapping at a molecular level how damaged DNA was repaired. Nucleotide excision repair is a multistep process that repairs UV-damaged DNA and safeguards genetic information. Building on that research, the group led by Kurumizaka and Osakabe discovered that UV-damaged DNA was very flexible, and that UV-DDB, the surveillance protein in nucleotide excision repair, recognizes the damaged DNA structure within chromatin. This discovery will advance the understanding of skin cancer in xeroderma pigmentosum patients with a gene mutation caused by deficiencies in nucleotide excision repair and provide key information for new treatments of skin cancer.
Collaborators on this research include Associate Professor Wataru Kagawa (Meisei University), Professor Kaoru Sugasawa (Kobe University), Professor Shigenori Iwai (Osaka University), Professor Fumio Hanaoka (Gakushuin University), and Dr. Nicolas H. Thoma (Group Leader at Friedrich Miesher Institute for Biomedical Research).
This research was published in Scientific Reports (Nature Publishing Group) under the title "Structural basis of pyrimidine-pyrimidone (6-4) photoproduct recognition by UV-DDB in the nucleosome."
本プレスリリースは発表元が入力した原稿をそのまま掲載しております。また、プレスリリースへのお問い合わせは発表元に直接お願いいたします。
このプレスリリースには、報道機関向けの情報があります。
プレス会員登録を行うと、広報担当者の連絡先や、イベント・記者会見の情報など、報道機関だけに公開する情報が閲覧できるようになります。
このプレスリリースを配信した企業・団体
- 名称 早稲田大学
- 所在地 東京都
- 業種 大学
- URL https://www.waseda.jp/top/
過去に配信したプレスリリース
異なるアモルファス材料系に意外な共通点
8/6 14:00
正常な神経細胞分化、鍵はタンパク質凝集
8/6 11:00
性格で高血圧リスクを予測
8/5 11:00
アルツハイマー病とレビー小体型認知症の複合病態で神経細胞死が進行する
8/1 15:00
AI・量子共通基盤の研究開発を開始
8/1 14:00
夏休み子ども向け科学実験教室「ユニラブ」開催のお知らせ
8/1 12:00
ロシア哲学の“死と復活”論争に新たな光
8/1 11:00
「想い」がつなぐ伝統 ―早大ラグビー蹴球部、公式戦用ジャージを紙袋に再生―
7/29 14:00
いつの間にか自己否定
7/29 13:00
運動学習の戦略にひそむ認知バイアス
7/24 12:00
液体ガリウムを使ってハイエントロピー酸化物超薄膜を作る
7/23 11:00
発酵ガスから化学原料へ
7/21 10:00