Rao Timsi, Gao Rui, Takada Saeko, Al Abo Muthana, Chen Xiang, Walters Kylie J, Pommier Yves, Aihara Hideki
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN 55455, USA.
Laboratory of Molecular Pharmacology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Nucleic Acids Res. 2016 Dec 1;44(21):10201-10215. doi: 10.1093/nar/gkw719. Epub 2016 Aug 19.
Tyrosyl DNA phosphodiesterase 2 (TDP2) is a multifunctional protein implicated in DNA repair, signal transduction and transcriptional regulation. In its DNA repair role, TDP2 safeguards genome integrity by hydrolyzing 5'-tyrosyl DNA adducts formed by abortive topoisomerase II (Top2) cleavage complexes to allow error-free repair of DNA double-strand breaks, thereby conferring cellular resistance against Top2 poisons. TDP2 consists of a C-terminal catalytic domain responsible for its phosphodiesterase activity, and a functionally uncharacterized N-terminal region. Here, we demonstrate that this N-terminal region contains a ubiquitin (Ub)-associated (UBA) domain capable of binding multiple forms of Ub with distinct modes of interactions and preference for either K48- or K63-linked polyUbs over monoUb. The structure of TDP2 UBA bound to monoUb shows a canonical mode of UBA-Ub interaction. However, the absence of the highly conserved MGF motif and the presence of a fourth α-helix make TDP2 UBA distinct from other known UBAs. Mutations in the TDP2 UBA-Ub binding interface do not affect nuclear import of TDP2, but severely compromise its ability to repair Top2-mediated DNA damage, thus establishing the importance of the TDP2 UBA-Ub interaction in DNA repair. The differential binding to multiple Ub forms could be important for responding to DNA damage signals under different contexts or to support the multi-functionality of TDP2.
酪氨酰-DNA磷酸二酯酶2(TDP2)是一种多功能蛋白,参与DNA修复、信号转导和转录调控。在其DNA修复作用中,TDP2通过水解由流产的拓扑异构酶II(Top2)切割复合物形成的5'-酪氨酰DNA加合物来保护基因组完整性,从而允许对DNA双链断裂进行无差错修复,进而赋予细胞对Top2毒素的抗性。TDP2由一个负责其磷酸二酯酶活性的C末端催化结构域和一个功能未明的N末端区域组成。在这里,我们证明这个N末端区域包含一个泛素(Ub)相关(UBA)结构域,该结构域能够以不同的相互作用模式结合多种形式的Ub,并且相对于单泛素,对K48或K63连接的多泛素有偏好。与单泛素结合的TDP2 UBA的结构显示了UBA-Ub相互作用的典型模式。然而,缺乏高度保守的MGF基序以及存在第四个α螺旋使得TDP2 UBA不同于其他已知的UBA。TDP2 UBA-Ub结合界面的突变不影响TDP2的核输入,但严重损害其修复Top2介导的DNA损伤的能力,从而确立了TDP2 UBA-Ub相互作用在DNA修复中的重要性。对多种Ub形式的差异结合可能对于在不同背景下响应DNA损伤信号或支持TDP2的多功能性很重要。