Weixlbaumer Albert, Werner Andreas, Flamm Christoph, Westhof Eric, Schroeder Renée
Max F. Perutz Laboratories, Department of Microbiology and Genetics, University of Vienna, Austria.
Nucleic Acids Res. 2004 Sep 30;32(17):5126-33. doi: 10.1093/nar/gkh841. Print 2004.
The HIV-1 type dimerization initiation signal (DIS) loop was used as a starting point for the analysis of the stability of Watson-Crick (WC) base pairs in a tertiary structure context. We used ultraviolet melting to determine thermodynamic parameters for loop-loop tertiary interactions and compared them with regular secondary structure RNA helices of the same sequences. In 1 M Na+ the loop-loop interaction of a HIV-1 DIS type pairing is 4 kcal/mol more stable than its sequence in an equivalent regular and isolated RNA helix. This difference is constant and sequence independent, suggesting that the rules governing the stability of WC base pairs in the secondary structure context are also valid for WC base pairs in the tertiary structure context. Moreover, the effect of ion concentration on the stability of loop-loop tertiary interactions differs considerably from that of regular RNA helices. The stabilization by Na+ and Mg2+ is significantly greater if the base pairing occurs within the context of a loop-loop interaction. The dependence of the structural stability on salt concentration was defined via the slope of a T(m)/log [ion] plot. The short base-paired helices are stabilized by 8 degrees C/log [Mg2+] or 11 degrees C/log [Na+], whereas base-paired helices forming tertiary loop-loop interactions are stabilized by 16 degrees C/log [Mg2+] and 26 degrees C/log [Na+]. The different dependence on ionic strength that is observed might reflect the contribution of specific divalent ion binding to the preformation of the hairpin loops poised for the tertiary kissing loop-loop contacts.
HIV-1 型二聚化起始信号(DIS)环被用作在三级结构背景下分析沃森-克里克(WC)碱基对稳定性的起点。我们使用紫外熔解来确定环-环三级相互作用的热力学参数,并将其与相同序列的规则二级结构 RNA 螺旋进行比较。在 1 M Na⁺ 中,HIV-1 DIS 型配对的环-环相互作用比其在等效的规则且孤立的 RNA 螺旋中的序列稳定 4 kcal/mol。这种差异是恒定的且与序列无关,这表明在二级结构背景下控制 WC 碱基对稳定性的规则在三级结构背景下对 WC 碱基对也同样适用。此外,离子浓度对环-环三级相互作用稳定性的影响与规则 RNA 螺旋的影响有很大不同。如果碱基配对发生在环-环相互作用的背景下,Na⁺ 和 Mg²⁺ 的稳定作用会显著更大。结构稳定性对盐浓度的依赖性通过 T(m)/log [离子] 图的斜率来定义。短的碱基配对螺旋通过 8℃/log [Mg²⁺] 或 11℃/log [Na⁺] 得到稳定,而形成三级环-环相互作用的碱基配对螺旋通过 16℃/log [Mg²⁺] 和 26℃/log [Na⁺] 得到稳定。观察到的对离子强度的不同依赖性可能反映了特定二价离子结合对准备进行三级亲吻环-环接触的发夹环预形成的贡献。