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远程结构修饰对大环化合物构象的控制。

Conformational Control of Macrocycles by Remote Structural Modification.

机构信息

Davenport Research Laboratories, Department of Chemistry , University of Toronto , 80 Saint George Street , Toronto , Ontario , Canada M5S 3H6.

出版信息

Chem Rev. 2019 Sep 11;119(17):9724-9752. doi: 10.1021/acs.chemrev.8b00742. Epub 2019 Aug 14.

Abstract

The conformational analysis of macrocycles is a complex and challenging problem. There are many factors that contribute to this complexity. These include a large number of degrees of freedom, transannular interactions such as hydrogen bonds and hydrophobic interactions, and a range of steric interactions, along with ring strain effects. To a greater extent than within acyclic molecules, these interactions within macrocycles are coupled such that changing one dihedral angle can significantly affect other dihedral angles, further complicating the situation. However, this coupling of bond rotations and transannular interactions enables the transmission of three-dimensional information from one side of a macrocycle to the other. Making relatively small structural modifications to a macrocycle can result in local conformational changes that propagate along the ring to affect distal structural features. The factors that control how such changes can propagate are poorly understood, and it is difficult to predict which modifications will result in significant conformational reorganizations of remote regions of a macrocycle. This review discusses examples where small structural modifications to macrocyclic scaffolds change the conformational preferences of structurally remote regions of the ring. We will highlight evidence provided for conformational changes triggered by remote substituents and explanations of how these changes might occur in an effort to further understand the factors that control such phenomena.

摘要

大环的构象分析是一个复杂而具有挑战性的问题。有许多因素导致了这种复杂性。这些因素包括大量的自由度、跨环相互作用(如氢键和疏水相互作用)以及一系列的立体相互作用,以及环应变效应。与非环分子相比,大环内的这些相互作用是耦合的,因此改变一个二面角可以显著影响其他二面角,进一步使情况复杂化。然而,键旋转和跨环相互作用的这种耦合使得三维信息能够从大环的一侧传递到另一侧。对大环进行相对较小的结构修饰可以导致局部构象变化,这些变化沿着环传播,影响远端结构特征。控制这些变化如何传播的因素理解得很差,而且很难预测哪些修饰会导致大环远程区域的显著构象重排。这篇综述讨论了大环支架的微小结构修饰如何改变环的结构远程区域构象偏好的例子。我们将强调提供的远程取代基触发构象变化的证据,并解释这些变化如何发生,以努力进一步理解控制这种现象的因素。

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