Andres Sara N, Appel C Denise, Westmoreland James W, Williams Jessica S, Nguyen Yvonne, Robertson Patrick D, Resnick Michael A, Williams R Scott
Genome Integrity and Structural Biology Laboratory, National Institute of Environmental Health Sciences, US National Institutes of Health, Department of Health and Human Services, Research Triangle Park, North Carolina, USA.
Nat Struct Mol Biol. 2015 Feb;22(2):158-66. doi: 10.1038/nsmb.2945. Epub 2015 Jan 12.
Ctp1 (also known as CtIP or Sae2) collaborates with Mre11-Rad50-Nbs1 to initiate repair of DNA double-strand breaks (DSBs), but its functions remain enigmatic. We report that tetrameric Schizosaccharomyces pombe Ctp1 contains multivalent DNA-binding and DNA-bridging activities. Through structural and biophysical analyses of the Ctp1 tetramer, we define the salient features of Ctp1 architecture: an N-terminal interlocking tetrameric helical dimer-of-dimers (THDD) domain and a central intrinsically disordered region (IDR) linked to C-terminal 'RHR' DNA-interaction motifs. The THDD, IDR and RHR are required for Ctp1 DNA-bridging activity in vitro, and both the THDD and RHR are required for efficient DSB repair in S. pombe. Our results establish non-nucleolytic roles of Ctp1 in binding and coordination of DSB-repair intermediates and suggest that ablation of human CtIP DNA binding by truncating mutations underlie the CtIP-linked Seckel and Jawad syndromes.
Ctp1(也称为CtIP或Sae2)与Mre11-Rad50-Nbs1协同作用以启动DNA双链断裂(DSB)的修复,但其功能仍然不明。我们报道,四聚体粟酒裂殖酵母Ctp1具有多价DNA结合和DNA桥接活性。通过对Ctp1四聚体的结构和生物物理分析,我们确定了Ctp1结构的显著特征:一个N端互锁四聚体螺旋二聚体(THDD)结构域和一个与C端“RHR”DNA相互作用基序相连的中央内在无序区域(IDR)。THDD、IDR和RHR是体外Ctp1 DNA桥接活性所必需的,并且THDD和RHR都是粟酒裂殖酵母中有效DSB修复所必需的。我们的结果确立了Ctp1在DSB修复中间体的结合和协调中的非核酸酶作用,并表明通过截短突变消除人CtIP DNA结合是与CtIP相关的Seckel综合征和Jawad综合征的基础。