Department of Biochemistry, Lineberger ComprehensiveCancer Center, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Biol Chem. 2012 Dec 7;287(50):41583-94. doi: 10.1074/jbc.M112.415984. Epub 2012 Oct 20.
The TRF2-Rap1 complex suppresses non-homologous end joining and interacts with DNAPK-C to prevent end joining. We previously demonstrated that hTRF2 is a double strand telomere binding protein that forms t-loops in vitro and recognizes three- and four-way junctions independent of DNA sequence. How the DNA binding characteristics of hTRF2 to DNA is altered in the presence of hRap1 however is not known. Here we utilized EM and quantitative gel retardation to characterize the DNA binding properties of hRap1 and the TRF2-Rap1 complex. Both gel filtration chromatography and mass analysis from two-dimensional projections showed that the TRF2-Rap1 complex exists in solution and binds to DNA as a complex consisting of four monomers each of hRap1 and hTRF2. EM revealed for the first time that hRap1 binds to DNA templates in the absence of hTRF2 with a preference for double strand-single strand junctions in a sequence independent manner. When hTRF2 and hRap1 are in a complex, its affinity for ds telomeric sequences is 2-fold higher than TRF2 alone and more than 10-fold higher for telomeric 3' ends. This suggests that as hTRF2 recruits hRap1 to telomeric sequences, hRap1 alters the affinity of hTRF2 and its binding preference on telomeric DNA. Moreover, the TRF2-Rap1 complex has higher ability to re-model telomeric DNA than either component alone. This finding underlies the importance of complex formation between hRap1 and hTRF2 for telomere function and end protection.
TRF2-Rap1 复合物抑制非同源末端连接,并与 DNAPK-C 相互作用以防止末端连接。我们之前证明 hTRF2 是一种双链端粒结合蛋白,它在体外形成 t 环,并独立于 DNA 序列识别三链和四链结。然而,在 hRap1 存在的情况下,hTRF2 对 DNA 的 DNA 结合特性如何改变尚不清楚。在这里,我们利用 EM 和定量凝胶阻滞来表征 hRap1 和 TRF2-Rap1 复合物的 DNA 结合特性。凝胶过滤色谱和二维投影的质量分析均表明,TRF2-Rap1 复合物以复合物形式存在于溶液中,该复合物由每个 hRap1 和 hTRF2 的四个单体组成,与 DNA 结合。EM 首次揭示,在没有 hTRF2 的情况下,hRap1 以序列独立的方式优先与双链-单链结结合,从而与 DNA 模板结合。当 hTRF2 和 hRap1 形成复合物时,其与 ds 端粒序列的亲和力比单独的 TRF2 高 2 倍,比端粒 3' 末端高 10 倍以上。这表明,当 hTRF2 将 hRap1 招募到端粒序列时,hRap1 改变了 hTRF2 的亲和力及其在端粒 DNA 上的结合偏好。此外,TRF2-Rap1 复合物比单独的任何一种成分都具有更高的重新构建端粒 DNA 的能力。这一发现为 hRap1 和 hTRF2 之间形成复合物对于端粒功能和末端保护的重要性提供了依据。