Charier Gaëlle, Couprie Joël, Alpha-Bazin Béatrice, Meyer Vincent, Quéméneur Eric, Guérois Raphaël, Callebaut Isabelle, Gilquin Bernard, Zinn-Justin Sophie
Département d'Ingénierie et d'Etudes des Protéines, 91191 Gif-sur-Yvette, France.
Structure. 2004 Sep;12(9):1551-62. doi: 10.1016/j.str.2004.06.014.
53BP1 is a key transducer of the DNA damage checkpoint signal, which is required for phosphorylation of a subset of ATM substrates and p53 accumulation. After cell irradiation, the 53BP1 N-terminal region is phosphorylated. Its two C-terminal BRCT motifs interact with p53. Its central region is required and sufficient for 53BP1 foci formation at DNA strand breaks and for 53BP1 binding to the kinetochore. It contains an RG-rich segment and interacts with DNA in vitro. Here we show that the major globular domain of the 53BP1 central region adopts a new structural motif composed of two tightly packed Tudor domains and a C-terminal alpha helix. A unique surface essentially located on the first Tudor domain is involved in the binding to 53BP1 RG-rich sequence and to DNA, suggesting that the Tudor tandem can act as an adaptor mediating intramolecular as well as intermolecular protein-protein interactions and protein-nucleic acid associations.
53BP1是DNA损伤检查点信号的关键转导因子,是ATM底物的一个子集磷酸化和p53积累所必需的。细胞受到辐射后,53BP1的N端区域会发生磷酸化。其两个C端BRCT基序与p53相互作用。其中心区域对于53BP1在DNA链断裂处形成焦点以及53BP1与动粒结合是必需且足够的。它包含一个富含RG的片段,并在体外与DNA相互作用。在这里,我们表明53BP1中心区域的主要球状结构域采用了一种新的结构基序,该基序由两个紧密堆积的Tudor结构域和一个C端α螺旋组成。一个基本上位于第一个Tudor结构域上的独特表面参与了与53BP1富含RG序列和DNA的结合,这表明Tudor串联可以作为一种衔接子,介导分子内以及分子间的蛋白质-蛋白质相互作用和蛋白质-核酸结合。