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含胞嘧啶凸起的脱氧十三核苷酸双链体中的构象转变:额外的胞嘧啶在溶液中处于环出(低温)和堆积(高温)构象之间达到平衡。

Conformational transitions in cytidine bulge-containing deoxytridecanucleotide duplexes: extra cytidine equilibrates between looped out (low temperature) and stacked (elevated temperature) conformations in solution.

作者信息

Kalnik M W, Norman D G, Zagorski M G, Swann P F, Patel D J

机构信息

Department of Biochemistry and Molecular Biophysics, College of Physicians and Surgeons, Columbia University, New York, New York 10032.

出版信息

Biochemistry. 1989 Jan 10;28(1):294-303. doi: 10.1021/bi00427a040.

Abstract

High-resolution homonuclear and heteronuclear two-dimensional NMR studies have been carried out on the self-complementary d(C-C-G-C-G-A-A-T-T-C-C-G-G) duplex (designated GCG 13-mer) in aqueous solution. This sequence contains an extra cytidine located between residues G3 and G4 on each strand of the duplex. The exchangeable and nonexchangeable proton resonances have been assigned from an analysis of two-dimensional nuclear Overhauser enhancement (NOESY) and correlated (COSY and relay COSY) spectra for the GCG 13-mer duplex in H2O and D2O solution. The extra cytidine at the bulge site (designated CX) results in more pronounced changes in the NOE distance connectivities for the G3-CX-G4 segment centered about the CX residue compared to the C9-C10 segment on the partner strand opposite the CX residue for the GCG 13-mer duplex at 25 degrees C. The cross-peak intensities in the short mixing time NOESY spectrum also establish that all glycosidic torsion angles including that of CX are anti in the GCG 13-mer duplex at 25 degrees C. The observed chemical shift changes for the CX base protons and the G3pCX phosphorus resonance with temperature between 0 and 40 degrees C demonstrate a temperature-dependent conformational equilibrium in the premelting transition region. The NOE and chemical shift parameters establish that the predominant conformation at low temperature (0 degree C) has the extra cytidine looped out of the helix with the flanking G3.C10 and G4.C9 base pairs stacked on each other. These results support conclusions based on earlier one-dimensional NMR studies of extra cytidine containing complementary duplexes in aqueous solution [Morden, K. M., Chu, Y. G., Martin, F. H., & Tinoco, I., Jr. (1983) Biochemistry 22, 5557-5563. Woodson, S. A., & Crothers, D. M. (1987) Biochemistry 26, 904-912]. By contrast, the chemical shift and NOE parameters demonstrate that the conformational equilibrium shifts toward a structure with a stacked extra cytidine on raising the temperature to 40 degrees C prior to the helix-coil melting transition. The most downfield shifted phosphorus resonance in the GCG 13-mer duplex has been assigned to the phosphate in the C2-G3 step, and this observation demonstrates that the perturbation in the phosphodiester backbone extends to regions removed from the (G3-CX-G4).(C9-C10) bulge site.

摘要

已对水溶液中的自互补双链体d(C-C-G-C-G-A-A-T-T-C-C-G-G)(命名为GCG 13聚体)进行了高分辨率同核和异核二维核磁共振研究。该序列在双链体每条链的G3和G4残基之间包含一个额外的胞嘧啶。通过对H2O和D2O溶液中GCG 13聚体双链体的二维核Overhauser增强(NOESY)以及相关(COSY和接力COSY)谱的分析,已归属了可交换和不可交换质子共振。与25℃下GCG 13聚体双链体中与CX残基相对的互补链上的C9-C10片段相比,凸起位点(命名为CX)处的额外胞嘧啶导致以CX残基为中心的G3-CX-G4片段的NOE距离连接性发生更明显的变化。短混合时间NOESY谱中的交叉峰强度也证实,在25℃下GCG 13聚体双链体中包括CX糖苷键扭转角在内的所有糖苷键扭转角均为反式构象。在0至40℃之间观察到的CX碱基质子和G3pCX磷共振的化学位移变化表明,在预熔转变区域存在温度依赖性构象平衡。NOE和化学位移参数表明,低温(0℃)下的主要构象是额外的胞嘧啶从螺旋中环出,侧翼的G3.C10和G4.C9碱基对相互堆叠。这些结果支持了基于早期对水溶液中含额外胞嘧啶的互补双链体的一维核磁共振研究得出的结论[莫登,K.M.,朱,Y.G.,马丁,F.H.,&蒂诺科,I.,Jr.(1983年)《生物化学》22,5557 - 5563。伍德森,S.A.,&克罗瑟斯,D.M.(1987年)《生物化学》26,904 - 912]。相比之下,化学位移和NOE参数表明,在螺旋 - 卷曲熔化转变之前将温度升至40℃时,构象平衡向具有堆叠额外胞嘧啶的结构转变。GCG 13聚体双链体中化学位移最向低场移动的磷共振已归属为C2 - G3步中的磷酸酯,这一观察结果表明磷酸二酯主链的扰动延伸到了远离(G3 - CX - G4)·(C9 - C10)凸起位点的区域。

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