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초록
DNA-dependent protein kinase (DNA-PK) is involved in joining DNA double-strand breaks induced by ionizing radiation or V(D)J recombination and is activated by DNA ends and composed of a DNA binding subunit, Ku, and a catalytic subunit, DNA-PKcs. It has been suggested that DNA-PK might be 2nd upstream kinase for protein kinase B (PKB). In this report, we showed that Ser473 phosphorylation in the hydrophobic-motif of PKB is blocked in DNA-PK knockout mouse embryonic fibroblast cells (MEFs) following insulin stimulation, while there is no effect on Ser473 phosphorylation in DNA-PK wild type MEF cells. The observation is further confirmed in human glioblastoma cells expressing a mutant form of DNA-PK (M059J) and a wild-type of DNA-PK (M059K), indicating that DNA-PK is indeed important for PKB activation. Furthermore, the treatment of cells with doxorubicin, DNA-damage inducing agent, leads to PKB phosphorylation on Ser473 in control MEF cells while there is no response in DNA-PK knockout MEF cells. Together, these results proposed that DNA-PK has a potential role in insulin signaling as well as DNA-repair signaling pathway.
키워드
- 제목
- Activation mechanism of protein kinase B by DNA-dependent protein kinase involved in the DNA repair system
- 저자
- Li, Yuwen; Piao, Longzhen; Yang, Keumjin; Shin, Sanghee; Shin, Eulsoon; Park, Kyung-ah; Byun, Hee-sun; Won, Minho; Choi, Byung-lyul; Lee, Hyunji; Kim, Young-rae; Hong, Janghee; Hur, Gang Min; Kim, Jeong Lan; Cho, Jaeyoul; Seok, Jeong-ho; Park, Jongsun
- 발행일
- 2008
- 유형
- Article
- 저널명
- 한국독성학회지
- 권
- 24
- 호
- 3
- 페이지
- 175 ~ 182