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处于与沃森-克里克碱基配对双链体动态平衡的霍格施泰因碱基配对DNA双链体的首个实例——一项结构(核磁共振)、动力学及热力学研究。

The first example of a Hoogsteen base-paired DNA duplex in dynamic equilibrium with a Watson-Crick base-paired duplex--a structural (NMR), kinetic and thermodynamic study.

作者信息

Isaksson J, Zamaratski E, Maltseva T V, Agback P, Kumar A, Chattopadhyaya J

机构信息

Department of Bioorganic Chemistry, University of Uppsala, Sweden.

出版信息

J Biomol Struct Dyn. 2001 Jun;18(6):783-806. doi: 10.1080/07391102.2001.10506707.

Abstract

A single-point substitution of the O4' oxygen by a CH2 group at the sugar residue of A6 (i.e. 2'-deoxyaristeromycin moiety) in a self-complementary DNA duplex, 5'-d(C1G2C3G4A5A6T7T8C9G10C11G12)2(-3), has been shown to steer the fully Watson-Crick basepaired DNA duplex (1A), akin to the native counterpart, to a doubly A6:T7 Hoogsteen basepaired (1B) B-type DNA duplex, resulting in a dynamic equilibrium of (1A)<==>(1B): Keq = k1/k(-1) = 0.56+/-0.08. The dynamic conversion of the fully Watson-Crick basepaired (1A) to the partly Hoogsteen basepaired (1B) structure is marginally kinetically and thermodynamically disfavoured [k1 (298K) = 3.9 0.8 sec(-1); deltaHdegrees++ = 164+/-14 kJ/mol; -TdeltaS degrees++ (298K) = -92 kJ/mol giving a deltaG degrees++ 298 of 72 kJ/mol. Ea (k1) = 167 14 kJ/mol] compared to the reverse conversion of the Hoogsteen (1B) to the Watson-Crick (1A) structure [k-1 (298K) = 7.0 0.6 sec-1, deltaH degrees++ = 153 13 kJ/mol; -TdeltaSdegrees++ (298K) = -82 kJ/mol giving a deltaGdegrees++(298) of 71 kJ/mol. Ea (k-1) = 155 13 kJ/mol]. Acomparison of deltaGdegrees++(298) of the forward (k1) and backward (k-1) conversions, (1A)<==>(1B), shows that there is ca 1 kJ/mol preference for the Watson-Crick (1A) over the double Hoogsteen basepaired (1B) DNA duplex, thus giving an equilibrium ratio of almost 2:1 in favour of the fully Watson-Crick basepaired duplex. The chemical environments of the two interconverting DNA duplexes are very different as evident from their widely separated sets of chemical shifts connected by temperature-dependent exchange peaks in the NOESY and ROESY spectra. The fully Watson-Crick basepaired structure (1A) is based on a total of 127 intra, 97 inter and 17 cross-strand distance constraints per strand, whereas the double A6:T7 Hoogsteen basepaired (1B) structure is based on 114 intra, 92 inter and 15 cross-strand distance constraints, giving an average of 22 and 20 NOE distance constraints per residue and strand, respectively. In addition, 55 NMR-derived backbone dihedral constraints per strand were used for both structures. The main effect of the Hoogsteen basepairs in (1B) on the overall structure is a narrowing of the minor groove and a corresponding widening of the major groove. The Hoogsteen basepairing at the central A6:T7 basepairs in (1B) has enforced a syn conformation on the glycosyl torsion of the 2'-deoxyaristeromycin moiety, A6, as a result of substitution of the endocyclic 4'-oxygen in the natural sugar with a methylene group in A6. A comparison of the Watson-Crick basepaired duplex (1A) to the Hoogsteen basepaired duplex (1B) shows that only a few changes, mainly in alpha, sigma and gamma torsions, in the sugar-phosphate backbone seem to be necessary to accommodate the Hoogsteen basepair.

摘要

在自互补DNA双链体5'-d(C1G2C3G4A5A6T7T8C9G10C11G12)2(-3)中,A6(即2'-脱氧阿瑞吡坦霉素部分)的糖残基上的O4'氧被CH2基团单点取代,已被证明可将完全符合沃森-克里克碱基配对的DNA双链体(1A),类似于天然对应物,引导至双重A6:T7 Hoogsteen碱基配对的(1B)B型DNA双链体,导致(1A)⇌(1B)的动态平衡:Keq = k1/k(-1) = 0.56±0.08。完全沃森-克里克碱基配对的(1A)向部分Hoogsteen碱基配对的(1B)结构的动态转化在动力学和热力学上略有不利[k1(298K) = 3.9±0.8秒-1;ΔH°++ = 164±14 kJ/mol;-TΔS°++(298K) = -92 kJ/mol,给出298K时的ΔG°++为72 kJ/mol。Ea(k1) = 167±14 kJ/mol],与Hoogsteen(1B)向沃森-克里克(1A)结构的反向转化相比[k-1(298K) = 7.0±0.6秒-1,ΔH°++ = 153±13 kJ/mol;-TΔS°++(298K) = -82 kJ/mol,给出298K时的ΔG°++(298)为71 kJ/mol。Ea(k-1) = 155±13 kJ/mol]。正向(k1)和反向(k-1)转化(1A)⇌(1B)的ΔG°++(298)比较表明,与双重Hoogsteen碱基配对的(1B)DNA双链体相比,沃森-克里克(1A)有大约1 kJ/mol的偏好,因此给出了几乎2:1的平衡比,有利于完全沃森-克里克碱基配对的双链体。两种相互转化的DNA双链体的化学环境非常不同,这从它们在NOESY和ROESY光谱中由温度依赖性交换峰连接的广泛分离的化学位移集可以明显看出。完全沃森-克里克碱基配对的结构(1A)每条链基于总共127个链内、97个链间和17个跨链距离约束,而双重A6:T7 Hoogsteen碱基配对的(1B)结构基于114个链内、92个链间和15个跨链距离约束,每条链和每个残基平均分别有22个和20个NOE距离约束。此外,两种结构每条链都使用了55个NMR衍生的主链二面角约束。(1B)中Hoogsteen碱基对在整体结构上的主要影响是小沟变窄和相应的大沟变宽。(1B)中中心A6:T7碱基对处的Hoogsteen碱基配对由于A6中天然糖的内环4'-氧被亚甲基取代,在2'-脱氧阿瑞吡坦霉素部分A6的糖基扭转上强制形成了顺式构象。将沃森-克里克碱基配对的双链体(1A)与Hoogsteen碱基配对的双链体(1B)进行比较表明,糖-磷酸主链中似乎只需要一些变化,主要是在α、σ和γ扭转方面,以适应Hoogsteen碱基对。

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