Teng Peng, Zheng Mengmeng, Cerrato Darrell Cole, Shi Yan, Zhou Mi, Xue Songyi, Jiang Wei, Wojtas Lukasz, Ming Li-June, Hu Yong, Cai Jianfeng
Department of Chemistry, University of South Florida, Tampa, FL, USA.
Institute of Drug Discovery and Design, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, Zhejiang, P. R. China.
Commun Chem. 2021 May 10;4(1):58. doi: 10.1038/s42004-021-00496-0.
The discovery and application of new types of helical peptidic foldamers have been an attractive endeavor to enable the development of new materials, catalysts and biological molecules. To maximize their application potential through structure-based design, it is imperative to control their helical handedness based on their molecular scaffold. Herein we first demonstrate the generalizability of the solid-state right-handed helical propensity of the 4-helix of L-α/L-sulfono-γ-AA peptides that as short as 11-mer, using the high-resolution X-ray single crystallography. The atomic level folding conformation of the foldamers was also elucidated by 2D NMR and circular dichroism under various conditions. Subsequently, we show that the helical handedness of this class of foldamer is controlled by the chirality of their chiral side chains, as demonstrated by the left-handed 4-helix comprising 1:1 D-α/D-sulfono-γ-AA peptide. In addition, a heterochiral coiled-coil-like structure was also revealed for the first time, unambiguously supporting the impact of chirality on their helical handedness. Our findings enable the structure-based design of unique folding biopolymers and materials with the exclusive handedness or the racemic form of the foldamers in the future.
新型螺旋肽折叠体的发现与应用一直是一项颇具吸引力的工作,有助于开发新型材料、催化剂和生物分子。为了通过基于结构的设计最大限度地发挥其应用潜力,基于分子支架控制其螺旋手性势在必行。在此,我们首先利用高分辨率X射线单晶衍射证明了L-α/L-磺基-γ-氨基酸肽4-螺旋的固态右手螺旋倾向的普遍性,该螺旋短至11聚体。在各种条件下,通过二维核磁共振和圆二色性也阐明了折叠体的原子水平折叠构象。随后,我们表明这类折叠体的螺旋手性由其手性侧链的手性控制,由包含1:1 D-α/D-磺基-γ-氨基酸肽的左手4-螺旋证明。此外,还首次揭示了一种异手性卷曲螺旋样结构,明确支持了手性对其螺旋手性的影响。我们的发现有助于未来基于结构设计具有独特折叠的生物聚合物和材料,这些材料具有折叠体的单一手性或外消旋形式。