首页> 外文OA文献 >RNA bulge entropies in the unbound state correlate with peptide binding strengths for HIV-1 and BIV TAR RNA because of improved conformational access.
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RNA bulge entropies in the unbound state correlate with peptide binding strengths for HIV-1 and BIV TAR RNA because of improved conformational access.

机译:未结合状态的RNA凸起熵与HIV-1和BIV TAR RNA的肽结合强度有关,因为其构象获得性得到改善。

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摘要

For the binding of peptides to wild-type HIV-1 and BIV TAR RNA and to mutants with bulges of various sizes, changes in the DeltaDelta G values of binding were determined from experimental K d values. The corresponding entropies of these bulges are estimated by enumerating all possible RNA bulge conformations on a lattice and then applying the Boltzmann relationship. Independent calculations of entropies from fluctuations are also carried out using the Gaussian network model (GNM) recently introduced for analyzing folded structures. Strong correlations are seen between the changes in free energy determined for binding and the two different unbound entropy calculations. The fact that the calculated entropy increase with larger bulge size is correlated with the enhanced experimental binding free energy is unusual. This system exhibits a dependence on the entropy of the unbound form that is opposite to usual binding models. Instead of a large initial entropy being unfavorable since it would be reduced upon binding, here the larger entropies actually favor binding. Several interpretations are possible: (i) the higher conformational freedom implies a higher competence for binding with a minimal strain, by suitable selection amongst the set of already accessible conformations; (ii) larger bulge entropies enhance the probability of the specific favorable conformation of the bound state; (iii) the increased freedom of the larger bulges contri-butes more to the bound state than to the unbound state; (iv) indirectly the large entropy of the bound state might have an unfavorable effect on the solvent structure. Nonetheless, this unusual effect is interesting.
机译:为了使肽与野生型HIV-1和BIV TAR RNA以及与具有各种大小的凸起的突变体结合,从实验K d值确定结合的DeltaDelta G值的变化。通过列举晶格上所有可能的RNA凸起构象,然后应用玻尔兹曼关系,可以估算这些凸起的相应熵。还使用最近引入的用于分析折叠结构的高斯网络模型(GNM)对波动进行熵的独立计算。在为结合而确定的自由能的变化与两种不同的未结合熵计算之间可以看到很强的相关性。计算得出的熵随着凸出尺寸的增加而增加与增强的实验结合自由能相关的事实是不寻常的。该系统表现出对未结合形式的熵的依赖性,这与通常的结合模型相反。代替大的初始熵是不利的,因为它在结合时会减少,因此,较大的熵实际上有利于结合。可能有几种解释:(i)较高的构象自由度意味着通过在已经可及的构象集合中进行适当选择,以最小的应变获得更高的结合能力; (ii)更大的凸起熵增加了结合态特定有利构象的可能性; (iii)更大的凸起的增加的自由度对结合状态的贡献大于对未结合状态的贡献; (iv)间接地,大的键合态熵可能对溶剂结构产生不利影响。尽管如此,这种异常的效果还是很有趣的。

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