Wu Haifan, Qiao Qiao, Hu Yaogang, Teng Peng, Gao Wenyang, Zuo Xiaobing, Wojtas Lukasz, Larsen Randy W, Ma Shengqian, Cai Jianfeng
Department of Chemistry, University of South Florida, 4202 E. Fowler Ave, Tampa, FL 33620 (USA).
Chemistry. 2015 Feb 2;21(6):2501-7. doi: 10.1002/chem.201406112. Epub 2014 Dec 11.
Foldamers offer an attractive opportunity for the design of novel molecules that mimic the structures and functions of proteins and enzymes including biocatalysis and biomolecular recognition. Herein we report a new class of nonnatural helical sulfono-γ-AApeptide foldamers of varying lengths. The crystal structure of the sulfono-γ-AApeptide monomer S6 illustrates the intrinsic folding propensity of sulfono-γ-AApeptides, which likely originates from the bulkiness of tertiary sulfonamide moiety. The two-dimensional solution NMR spectroscopy data for the longest sequence S1 demonstrates a 10/16 right-handed helical structure. Optical analysis using circular dichroism further supports well- defined helical conformation of sulfono-γ-AApeptides in solution containing as few as five building blocks. Future development of sulfono-γ-AApeptides may lead to new foldamers with discrete functions, enabling expanded application in chemical biology and biomedical sciences.
折叠体为设计新型分子提供了一个有吸引力的机会,这些分子可以模拟蛋白质和酶的结构与功能,包括生物催化和生物分子识别。在此,我们报道了一类新型的不同长度的非天然螺旋磺基-γ-氨基酸肽折叠体。磺基-γ-氨基酸肽单体S6的晶体结构说明了磺基-γ-氨基酸肽的内在折叠倾向,这可能源于叔磺酰胺部分的庞大体积。最长序列S1的二维溶液核磁共振光谱数据表明其具有10/16右手螺旋结构。使用圆二色性的光学分析进一步支持了磺基-γ-氨基酸肽在仅含五个结构单元的溶液中具有明确的螺旋构象。磺基-γ-氨基酸肽的未来发展可能会产生具有离散功能的新型折叠体,从而在化学生物学和生物医学科学中得到更广泛的应用。