Lee Benjamin J, Barch Maryan, Castner Edward W, Völker Jens, Breslauer Kenneth J
Department of Chemistry and Chemical Biology, Rutgers-The State University of New Jersey, 610 Taylor Road, Piscataway, New Jersey 08854, USA.
Biochemistry. 2007 Sep 25;46(38):10756-66. doi: 10.1021/bi7005674. Epub 2007 Aug 25.
The triplet repeat sequence (CAG)n and related triplet repeats are associated with dynamic DNA mutations implicated in a number of debilitating human diseases. To gain insight into the dynamics of the (CAG)n repeat, we have substituted a single 2-aminopurine (2AP) fluorescent base for adenine at select positions within the 18 base looped domain of a (GC)3(CAG)6(GC)3 hairpin oligonucleotide. Using temperature-dependent steady-state fluorescence measurements in combination with time correlated photon counting spectroscopy, we show the conformation and dynamics of the C2APG domains to be strongly dependent on the position of the probe in the looped region. In other words, rather than being a uniform, single stranded loop, the (CAG)6 triplet repeat looped domain exhibits order and dynamics that are position dependent. The 2AP fluorescence dynamics within the C2APG repeat are well described by a 4 component exponential decay model, with lifetimes ranging from 5 ps to 4 ns. Differences in global DNA conformation (duplex, hairpin, single strand), as well as the local position of the probe within the loop of a given hairpin, predominantly are reflected in the relative amplitude rather than the lifetime of the probe. The time dependent 2AP anisotropy in the hairpin (CAG)n loops is sensitive to the position of the fluorescent base, with the fluorescence depolarization of a centrally located 2AP probe within the loop proceeding significantly more slowly than 2AP positioned at the 5'- or 3'-end of the repeat sequence near the loop-stem junction. These results are consistent with segmental motions of the CAG repeat, while also suggesting that the 2AP probe is significantly stacked, possibly even hydrogen bonded, within the partially structured CAG looped domain. Our results characterize the position-dependent and conformation-dependent dynamics and order within (CAG)n triplet repeat DNAs, properties of relevance to the biological mechanisms by which such domains can lead to disease states.
三联体重复序列(CAG)n及相关三联体重复与涉及多种使人衰弱的人类疾病的动态DNA突变有关。为深入了解(CAG)n重复序列的动力学,我们在(GC)3(CAG)6(GC)3发夹寡核苷酸的18个碱基的环化结构域内的特定位置,用单个2-氨基嘌呤(2AP)荧光碱基替代腺嘌呤。通过结合温度依赖的稳态荧光测量和时间相关光子计数光谱,我们表明C2APG结构域的构象和动力学强烈依赖于探针在环化区域中的位置。换句话说,(CAG)6三联体重复环化结构域并非是均匀的单链环,而是呈现出位置依赖性的有序性和动力学。C2APG重复序列内的2AP荧光动力学可用四组分指数衰减模型很好地描述,其寿命范围从5皮秒到4纳秒。整体DNA构象(双链体、发夹、单链)的差异,以及探针在给定发夹环内的局部位置,主要反映在探针的相对振幅而非寿命上。发夹(CAG)n环中随时间变化的2AP各向异性对荧光碱基的位置敏感,环内位于中心位置的2AP探针的荧光去极化比位于重复序列5'-或3'-末端靠近环-茎连接处的2AP慢得多。这些结果与CAG重复序列的片段运动一致,同时也表明2AP探针在部分结构化的CAG环化结构域内显著堆积,甚至可能形成氢键。我们的结果表征了(CAG)n三联体重复DNA内位置依赖性和构象依赖性的动力学及有序性,这些特性与这些结构域可导致疾病状态的生物学机制相关。