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DNA damage induced hyperphosphorylation of replication protein A. 1. Identification of novel sites of phosphorylation in response to DNA damage

机译:DNA损伤诱导复制蛋白A的过度磷酸化。1.识别响应DNA损伤的新的磷酸化位点

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摘要

Replication protein A (RPA) is the predominant eukaryotic single-stranded DNA binding protein composed of 70, 34, and 14 kDa subunits. RPA plays central roles in the processes of DNA replication, repair, and recombination, and the p34 subunit of RPA is phosphorylated in a cell-cycle-dependent fashion and is hyperphosphorylated in response to DNA damage. We have developed an in vitro procedure for the preparation of hyperphosphorylated RPA and characterized a series or novel sites, of phosphorylation using a combination of in gel tryptic digestion, SDS-PAGE and HPLC, MALDI-TOF MS analysis. 2D get electrophoresis, and phosphospecific antibodies. We have mapped five phosphorylation sites oil the RPA p34 subunit and five sites of phosphorylation on the RPA p70 Subunit, No modification of the 14 kDa subunit was observed. Using the procedures developed with in vitro phosphorylated RPA. we confirmed a series of phosphorylation events on RPA from HeLa cells that was hyperphosphorylated in vivo in response to the DNA damaging agents, aphidicolin and hydroxyurea.
机译:复制蛋白A(RPA)是主要的真核单链DNA结合蛋白,由70、34和14 kDa亚基组成。 RPA在DNA复制,修复和重组过程中起着核心作用,并且RPA的p34亚基以细胞周期依赖性方式被磷酸化,并响应DNA损伤而被超磷酸化。我们已经开发了用于制备高磷酸化RPA的体外方法,并使用了凝胶内胰蛋白酶消化,SDS-PAGE和HPLC,MALDI-TOF MS分析相结合的方法,对一系列或新颖的磷酸化位点进行了表征。 2D电泳和磷酸特异性抗体。我们已经绘制了RPA p34亚基上的五个磷酸化位点和RPA p70亚基上的五个磷酸化位点,未观察到14 kDa亚基的修饰。使用体外磷酸化RPA开发的程序。我们证实了HeLa细胞在RPA上发生的一系列磷酸化事件,这些事件在体内对DNA破坏剂,蚜虫碱和羟基脲产生了过度磷酸化。

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