Department of Chemistry, Durham University, South Road, Durham, DH1 3LE, UK.
Department of Physics, Durham University, South Road, Durham, DH1 3LE, UK.
Angew Chem Int Ed Engl. 2018 Aug 13;57(33):10549-10553. doi: 10.1002/anie.201804488. Epub 2018 Jun 27.
Stability towards protease degradation combined with modular synthesis has made peptoids of considerable interest in the fields of chemical biology, medicine, and biomaterials. Given their tertiary amide backbone, peptoids lack the capacity to hydrogen-bond, and as such, controlling secondary structure can be challenging. The incorporation of bulky, charged, or chiral aromatic monomers can be used to control conformation but such building blocks limit applications in many areas. Through NMR and X-ray analysis we demonstrate that non-chiral neutral fluoroalkyl monomers can be used to influence the K equilibria of peptoid amide bonds in model systems. The cis-isomer preference displayed is highly unprecedented given that neither chirality nor charge is used to control the peptoid amide conformation. The application of our fluoroalkyl monomers in the design of a series of linear peptoid oligomers that exhibit stable helical structures is also reported.
针对蛋白酶的稳定性降解与模块合成使肽核酸在化学生物学、医学和生物材料领域引起了相当大的兴趣。鉴于它们的叔酰胺骨架,肽核酸缺乏氢键形成能力,因此,控制二级结构具有挑战性。庞大的、带电荷的或手性芳香族单体的掺入可以用于控制构象,但这些构建块限制了它们在许多领域的应用。通过 NMR 和 X 射线分析,我们证明非手性中性氟烷基单体可用于影响模型系统中肽核酸酰胺键的 K 平衡。鉴于既没有使用手性也没有使用电荷来控制肽核酸酰胺构象,所显示的顺式异构体偏好是非常前所未有的。我们还报告了在设计一系列具有稳定螺旋结构的线性肽核酸寡聚物中应用我们的氟烷基单体的情况。