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包含内部G.T、G.A、A.C和T.C碱基对的DNA双链体的动力学:错配位点及其相邻位置的氢交换。

Dynamics of DNA duplexes containing internal G.T, G.A, A.C, and T.C pairs: hydrogen exchange at and adjacent to mismatch sites.

作者信息

Patel D J, Kozlowski S A, Ikuta S, Itakura K

出版信息

Fed Proc. 1984 Aug;43(11):2663-70.

PMID:6745451
Abstract

We have undertaken high-resolution NMR studies to elucidate the conformation and dynamics of the d(C1-G2-C3-G4-A5-A6-T6-T5-C4-G3-C2-G1) 12-mer duplex and its analogs where the symmetrically related dG.dC base pairs in position 3 are replaced by dG.dT, dG.dA, dA.dC, and dT.dC mismatch pairs. The pairing schemes for the dG.dA and dA.dC mismatch interactions have been elucidated from intra- and inter-base pair nuclear Overhauser effect measurements. The replacement of two dG.dC pairs by two dG.dA or two dG.dT pairs results in an approximately 20 C destabilization of the 12-mer; replacement by two dA.dC or two dT.dC pairs results in an approximately 30 C destabilization of the 12-mer. The hydrogen exchange kinetics of the resolved and assigned imino protons in the 12-mer duplex and its mismatch analogs in 0.1 M phosphate have been monitored by saturation recovery measurements. We observe kinetic destabilization at dG.dC base pair 4 adjacent to the mismatch site, which increases in the order 12-mer less than 12-mer GT less than 12-mer GA less than 12-mer AC less than 12-mer TC. By contrast, the kinetic destabilization at dA.dT base pairs 5 and 6 increases in the order 12-mer approximately 12-mer GT approximately 12-mer GA less than 12-mer AC less than 12-mer TC. These results demonstrate that the introduction of dG.dT and dG.dA mismatches results in dynamic perturbations that are localized at the adjacent base pairs, whereas introduction of dA.dC and dT.dC mismatches results in perturbations that extend several base pairs into the duplex. Both base pair opening and preequilibrium pathways contribute to the imino proton hydrogen exchange rates in the 12-mer GA, 12-mer AC, and 12-mer TC duplexes, which is in contrast to earlier studies that demonstrated that the imino proton hydrogen exchange rates were a direct measure of the base pair opening rates in the 12-mer and 12-mer GT duplexes.

摘要

我们进行了高分辨率核磁共振研究,以阐明d(C1-G2-C3-G4-A5-A6-T6-T5-C4-G3-C2-G1)12聚体双链体及其类似物的构象和动力学,其中位置3处对称相关的dG.dC碱基对被dG.dT、dG.dA、dA.dC和dT.dC错配碱基对取代。通过碱基对内和碱基间核Overhauser效应测量,阐明了dG.dA和dA.dC错配相互作用的配对方案。用两个dG.dA或两个dG.dT碱基对取代两个dG.dC碱基对会导致12聚体的稳定性降低约20℃;用两个dA.dC或两个dT.dC碱基对取代会导致12聚体的稳定性降低约30℃。通过饱和恢复测量监测了12聚体双链体及其错配类似物在0.1 M磷酸盐中解析和指定的亚氨基质子的氢交换动力学。我们观察到错配位点相邻的dG.dC碱基对4处的动力学不稳定,其增加顺序为12聚体小于12聚体GT小于12聚体GA小于12聚体AC小于12聚体TC。相比之下,dA.dT碱基对5和6处的动力学不稳定增加顺序为12聚体约等于12聚体GT约等于12聚体GA小于12聚体AC小于12聚体TC。这些结果表明,引入dG.dT和dG.dA错配会导致动态扰动局限于相邻碱基对,而引入dA.dC和dT.dC错配会导致扰动延伸到双链体中的几个碱基对。碱基对打开和预平衡途径都对12聚体GA、12聚体AC和12聚体TC双链体中亚氨基质子的氢交换速率有贡献,这与早期研究结果相反,早期研究表明亚氨基质子的氢交换速率是12聚体和12聚体GT双链体中碱基对打开速率的直接测量指标。

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