Ugrinova Iva, Zlateva Stanislava, Pashev Iliya G, Pasheva Evdokia A
Institute of Molecular Biology, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
Int J Biochem Cell Biol. 2009 Jul;41(7):1556-62. doi: 10.1016/j.biocel.2009.01.010. Epub 2009 Jan 23.
The high mobility group box (HMGB) 1 protein, one of the most abundant nuclear non-histone proteins has been known for its inhibitory effect on repair of DNA damaged by the antitumor drug cisplatin. Here, we report the first results that link HMGB1 to repair of cisplatin-treated DNA at nucleosome level. Experiments were carried out with three types of reconstituted nucleosomes strongly positioned on the damaged DNA: linker DNA containing nucleosomes (centrally and end-positioned) and core particles. The highest repair synthesis was registered with end-positioned nucleosomes, two and three times more efficient than that with centrally positioned nucleosomes and core particles, respectively. HMGB1 inhibited repair of linker DNA containing nucleosomes more efficiently than that of core particles. Just the opposite was the effect of the in vivo acetylated HMGB1: stronger repair inhibition was obtained with core particles. No inhibition was observed with HMGB1 lacking the acidic tail. Binding of HMGB1 proteins to different nucleosomes was also analysed. HMGB1 bound preferentially to damage nucleosomes containing linker DNA, while the binding of the acetylated protein was linker independent. We show that both the repair of cisplatin-damaged nucleosomes and its inhibition by HMGB1 are nucleosome position-dependent events which are accomplished via the acidic tail and modulated by acetylation.
高迁移率族蛋白盒(HMGB)1是细胞核中最为丰富的非组蛋白之一,已知其对顺铂所致DNA损伤的修复具有抑制作用。在此,我们首次报道了在核小体水平上,HMGB1与顺铂处理后DNA修复之间的联系。实验使用了三种在损伤DNA上定位强烈的重组核小体:含连接DNA的核小体(中心定位和末端定位)以及核心颗粒。末端定位的核小体修复合成效率最高,分别比中心定位的核小体和核心颗粒高两倍和三倍。HMGB1对含连接DNA的核小体的修复抑制作用比对核心颗粒的更强。体内乙酰化的HMGB1的作用则相反:对核心颗粒的修复抑制作用更强。缺乏酸性尾巴的HMGB1未观察到抑制作用。我们还分析了HMGB1蛋白与不同核小体的结合情况。HMGB1优先结合含连接DNA的损伤核小体,而乙酰化蛋白的结合则不依赖连接DNA。我们表明,顺铂损伤核小体的修复及其被HMGB1抑制均是核小体位置依赖性事件,这些事件通过酸性尾巴完成并受乙酰化调节。