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首页> 外文期刊>Chemistry - A European Journal >Evolution of a Constitutional Dynamic Library Driven by Self-Organisation of a Helically Folded Molecular Strand
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Evolution of a Constitutional Dynamic Library Driven by Self-Organisation of a Helically Folded Molecular Strand

机译:由螺旋折叠分子链的自组织驱动的动态宪法图书馆的演变。

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摘要

Conversion of macrocyclic imine entities into helical strands was achieved through three- and four-component exchange reactions within constitutionally dynamic libraries. The generation of sequences of the intrinsic helicity codon, based on the hydrazone–pyrimidine fragment obtained by condensation of pyrimidine dialdehyde A with pyrimidine bis-hydrazine B, shifted the equilibrium between all the possible macrocycles and strands towards the full expression (98%) of helical product [A/B]. Furthermore, it was shown that chain folding accelerated the dynamic exchange reactions among the library members. Lastly, in four-component experiments (involving A, B, E and either C or D), even though the macrocyclic entities ([A/C], [B/E]; [A/D], [B/E]) were the kinetically preferred products, over time dialdehyde A relinquished its initial diamine partners C or D to opt for bis-hydrazine B, which allowed the preferential formation of the helically folded strand. The present results indicate that self-organisation pressure was able to drive the dynamic system towards the selective generation of the strand undergoing helical folding.
机译:大环亚胺实体向螺旋链的转化是通过结构动力学文库中的三组分和四组分交换反应实现的。基于嘧啶二醛A与嘧啶双肼B缩合得到的hydr-嘧啶片段,内在螺旋密码子序列的产生将所有可能的大环和链之间的平衡移向完整表达(> 98%)螺旋积[A / B]。此外,显示链折叠加速了文库成员之间的动态交换反应。最后,在四成分实验中(涉及A,B,E以及C或D),即使是大环实体([A / C],[B / E],[A / D],[B / E] )是动力学上优选的产物,随着时间的流逝,二醛A放弃了其最初的二胺配偶体C或D,以选择双肼B,从而允许优先形成螺旋折叠链。目前的结果表明自组织压力能够驱动动态系统朝着螺旋折叠的股的选择性生成。

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