Department of Chemistry and Biology "A. Zambelli" , University of Salerno , Via Giovanni Paolo II, 132 , Fisciano , Salerno 84084 Italy.
J Org Chem. 2019 Sep 6;84(17):10911-10928. doi: 10.1021/acs.joc.9b01509. Epub 2019 Aug 8.
Controlling the network of intramolecular interactions encoded by α-chiral side chains and the equilibria between cis- and trans-amide junctions in cyclic peptoid architectures constitutes a significant challenge for the construction of stable reverse turn and loop structures. In this contribution, we reveal, with the support of NMR spectroscopy, single-crystal X-ray crystallography and density functional theory calculations, the relevant noncovalent interactions stabilizing tri-, tetra-, hexa-, and octameric cyclic peptoids (as free hosts and host-guest complexes) with strategically positioned -()-(1-phenylethyl)/-benzyl side chains, and how these interactions influence the backbone topological order. With the help of theoretical models and spectroscopic/diffractometric studies, we disclose new γ-/β-turn and loop structures present in α-peptoid-based macrocycles and classify them according ϕ, ψ, and ω torsion angles. In our endeavor to characterize emergent secondary structures, we solved the solid-state structure of the largest metallated cyclic peptoid ever reported, characterized by an unprecedented alternated cis/trans amide bond linkage. Overall, our results indicate that molecules endowed with different elements of asymmetry (central and conformational) provide new architectural elements of facile atroposelective construction and broad conformational stability as the minimalist scaffold for novel stereodefined peptidomimetic foldamers and topologically biased libraries necessary for future application of peptoids in all fields of science.
控制由α-手性侧链编码的分子内相互作用网络以及环状肽结构中环酰胺键的顺式和反式构象之间的平衡,是构建稳定的反向转弯和环结构的重大挑战。在本研究中,我们通过核磁共振波谱、单晶 X 射线晶体学和密度泛函理论计算,揭示了具有战略定位的 -()-(1-苯乙基)/-苄基侧链的三、四、六和八元环状肽(作为游离主体和主体-客体配合物)的非共价相互作用如何稳定这些相互作用如何影响主链拓扑有序性。借助理论模型和光谱/衍射研究,我们揭示了在基于α-肽的大环中存在的新的γ-/β-转角和环结构,并根据ϕ、ψ和ω扭转角对它们进行分类。在我们努力表征新出现的二级结构的过程中,我们解决了有史以来报道的最大金属化环状肽的固态结构,其特征是前所未有的交替顺式/反式酰胺键连接。总的来说,我们的研究结果表明,具有不同不对称性元素(中心和构象)的分子为新型立体定义的肽模拟折叠物和拓扑偏向文库提供了易于构建的手性选择性结构单元和广泛的构象稳定性,这些文库是肽在科学各个领域未来应用所必需的。