BRCA1 and its phosphorylation involved in caffeine-inhibitable event upstream of G2 checkpoint


Autoria(s): Li, N; Zhang, H; Wang, YL; Hao, JF
Data(s)

2010

Resumo

Caffeine, which specifically inhibits ATM/ATR kinases, efficiently abrogates the ionizing radiation (IR)-induced G2 arrest and increases the sensitivity of various tumor cells to IR. Mechanisms for the effect of caffeine remain to be elucidated. As a target of ATM/ATR kinases, BRCA1 becomes activated and phosphorylated in response to IR. Thus, in this work, we investigated the possible role of BRCA1 in the effect of caffeine on G2 checkpoint and observed how BRCA1 phosphorylation was regulated in this process. For these purposes, the BRCA1 protein level and the phosphorylation states were analyzed by Western blotting by using an antibody against BRCA1 and phospho-specific antibodies against Ser-1423 and Ser-1524 residues in cells exposed to a combination of IR and caffeine. The results showed that caffeine down-regulated IR-induced BRCA1 expression and specifically abolished BRCA1 phosphorylation of Ser-1524, which was followed by an override of G2 arrest by caffeine. In addition, the ability of BRCA1 to transactivate p21 may be required for MCF-7 but not necessary for Hela response to caffeine. These data suggest that BRCA1 may be a potential target of caffeine. BRCA1 and its phosphorylation are most likely to be involved in the caffeine-inhibitable event upstream of G2 arrest.

Identificador

http://ir.impcas.ac.cn/handle/113462/8023

http://www.irgrid.ac.cn/handle/1471x/133088

Idioma(s)

英语

Fonte

Li, N; Zhang, H; Wang, YL; Hao, JF.BRCA1 and its phosphorylation involved in caffeine-inhibitable event upstream of G2 checkpoint,SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY,2010,53(7):1281-1285

Palavras-Chave #DNA-DAMAGE CHECKPOINT #DOUBLE-STRAND BREAKS #CELL-CYCLE #IONIZING IRRADIATION #ATM #KINASE #DISTINCT #ARREST #TRANSACTIVATION #ACTIVATION
Tipo

期刊论文