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Conformationally Controlled Linear and Helical Hydrocarbons Bearing Extended Side Chains

机译:构象控制的线性和螺旋烃轴承延伸侧链

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摘要

Conformationally controlled flexible molecules are ideal for applications in medicine and materials, where shape matters but an ability to adapt to multiple and changing environments is often required. The conformation of flexible hydrocarbon chains bearing contiguous methyl substituents is controlled through the avoidance of syn-pentane interactions: alternating syn-anti isomers adopt a linear conformation while all-syn isomers adopt a helical conformation. From a simple diamond lattice analysis, larger substituents, which would be required for most potential applications, result in significant and unavoidable syn-pentane interactions, suggesting substantially reduced conformational control. Through a combination of computation, synthesis, and NMR analysis, we have identified a selection of substitution patterns that allow large groups to be incorporated on conformationally controlled linear and helical hydrocarbon chains. Surprisingly, when the methyl substituents of alternating syn-anti hydrocarbons are replaced with acetoxyethyl groups, the main chain of almost 95% of the population of molecules adopt a linear conformation. Here, the side chains adopt nonideal eclipsed conformations with the main chain, thus minimizing syn-pentane interactions. In the case of all-syn hydrocarbons, concurrent removal of some methyl groups on the main chain adjacent to the large substituents is required to maintain a high population of molecules adopting a helical conformation. This information can now be used to design flexible hydrocarbon chains displaying functional groups in a defined relative orientation for multivalent binding or cooperative reactivity, for example, in targeting the interfaces defined by disease-relevant protein-protein interactions.
机译:各种控制的柔性分子非常适用于医学和材料中的应用,其中造型很重要,而且通常需要适应多个和变化环境的能力。通过避免同戊烷相互作用控制柔性烃链轴承连续甲基取代基的构象:交替的同步抗异构体采用线性构象,而全身同伴采用螺旋构象。从简单的金刚石晶格分析,大多数潜在应用需要较大的取代基,导致显着且不可避免的同步戊烷相互作用,表明实质上减小了构象控制。通过计算,合成和NMR分析的组合,我们已经确定了一种选择替代模式,其允许大的组掺入构象控制的线性和螺旋烃链上。令人惊讶的是,当用乙酰氧基乙基代替交替的同步烃的甲基取代基时,近95%的分子群的主链采用线性构象。这里,侧链采用具有主链的非膜状果皮兼容,从而最大限度地减少了同戊烷相互作用。在全同步烃的情况下,需要在与大取代基附近的主链上的一些甲基的同时除去,以保持采用螺旋构象的高分子分子。该信息现在可以用于设计柔性碳氢化合物链,其以多价结合或协作反应性的限定的相对取向显示官能团,例如,靶向由疾病相关蛋白质 - 蛋白质相互作用定义的界面。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第40期|16682-16692|共11页
  • 作者单位

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

    School of Chemistry NUI Galway Galway H91 TK33 Ireland;

    School of Chemistry University of Bristol BS8 1TS Bristol U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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