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迪克森-德鲁十二聚体中氧杂环丁烷锁定的胸苷会导致局部碱基配对扭曲——一项核磁共振结构与水合作用研究。

Oxetane locked thymidine in the Dickerson-Drew dodecamer causes local base pairing distortions -- an NMR structure and hydration study.

作者信息

Isaksson J, Plashkevych O, Pradeepkumar P I, Chatterjee S, Barman J, Pathmasiri W, Shrivastava P, Petit C, Chattopadhyaya J

机构信息

Department of Bioorganic Chemistry, Biomedical Center, Uppsala University, S-751 23 Uppsala, Sweden.

出版信息

J Biomol Struct Dyn. 2005 Dec;23(3):299-330. doi: 10.1080/07391102.2005.10507067.

Abstract

The introduction of a North-type sugar conformation constrained oxetane T block, 1-(1',3'-O-anhydro-beta-D-psicofuranosyl) thymine, at the T(7) position of the self-complementary Dickerson-Drew dodecamer, d(5'-C(1)G(2)C(3)G(4)A(5)A(6)T(7)T(8)C(9)G(10)C(11)G(12)-3'), considerably perturbs the conformation of the four central base pairs, reducing the stability of the structure. UV spectroscopy and 1D NMR display a drop in melting temperature of approximately 10 degrees C per modification for the T(7) oxetane modified duplex, where the T(7) block has been introduced in both strands, compared to the native Dickerson-Drew dodecamer. The three dimensional structure has been determined by NMR spectroscopy and has subsequently been compared with the results of 2.4 ns MD simulations of the native and the T(7) oxetane modified duplexes. The modified T(7) residue is found to maintain its constrained sugar- and the related glycosyl torsion conformations in the duplex, resulting in staggered and stretched T(7).A(6) and A(6).T(7) non-linear base pairs. The stacking is less perturbed, but there is an increased roll between the two central residues compared to the native counterpart, which is compensated by tilts of the neighboring base steps. The one dimensional melting profile of base protons of the T(7) and T(8) residues reveals that the introduction of the North-type sugar constrained thymine destabilizes the core of the modified duplex, promoting melting to start simultaneously from the center as well as from the ends. Temperature dependent hydration studies by NMR demonstrate that the central T(7).A(6)/A(6).T(7) base pairs of the T(7) oxetane modified Dickerson-Drew dodecamer have at least one order of magnitude higher water exchange rates (correlated to the opening rate of the base pair) than the corresponding base pairs in the native duplex.

摘要

在自互补的迪克森-德鲁十二聚体d(5'-C(1)G(2)C(3)G(4)A(5)A(6)T(7)T(8)C(9)G(10)C(11)G(12)-3')的T(7)位置引入一个北型糖构象受限的氧杂环丁烷T砌块,即1-(1',3'-O-脱水-β-D-拟呋喃糖基)胸腺嘧啶,会极大地扰乱四个中央碱基对的构象,降低结构的稳定性。紫外光谱和一维核磁共振显示,与天然的迪克森-德鲁十二聚体相比,对于在两条链中都引入了T(7)氧杂环丁烷修饰的双链体,每进行一次修饰,其解链温度大约下降10℃。通过核磁共振光谱确定了三维结构,随后将其与天然双链体和T(7)氧杂环丁烷修饰双链体的2.4纳秒分子动力学模拟结果进行了比较。发现修饰后的T(7)残基在双链体中保持其受限的糖和相关的糖基扭转构象,导致T(7).A(6)和A(6).T(7)非直线碱基对交错且伸展。堆积受到的干扰较小,但与天然对应物相比,两个中央残基之间的滚动增加,这由相邻碱基步的倾斜来补偿。T(7)和T(8)残基碱基质子的一维解链曲线表明,北型糖受限胸腺嘧啶的引入使修饰双链体的核心不稳定,促进解链从中心以及两端同时开始。核磁共振进行的温度依赖性水合研究表明,T(7)氧杂环丁烷修饰的迪克森-德鲁十二聚体的中央T(7).A(6)/A(6).T(7)碱基对比天然双链体中的相应碱基对具有至少一个数量级更高的水交换速率(与碱基对的打开速率相关)。

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