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Construction of supramolecular helices and breaking the helicity by forming supramolecular β-sheet structures using suitable self-assembling pseudopeptide building blocks

机译:使用合适的自组装假肽构建模块构建超分子螺旋并通过形成超分子β-折叠结构打破螺旋

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摘要

Bis-valine derivatives of malonamide (Guha, S.; Drew, M. G. B. Small 2008, 4, 1993-2005) and a bis-valine derivative of 1,1-cyclopropane dicarboxamide were used as building blocks for the construction of supramolecular helical structures. The six-membered intramolecular hydrogen-bonded scaffold is formed, and this acts as a unique supramolecular synthon for the construction of a pseudopeptide-based supramolecular helical structure. However, in absence of this intramolecular hydrogen bond, intermolecular hydrogen bonds are formed among the peptide strands. This leads to a supramolecular β-sheet structure. Proper selection of the supramolecular synthon (six-membered intramolecular hydrogen-bonded scaffold) promotes supramolecular helix formation, and a deviation from this molecular structure dictates the disruption of supramolecular helicity. In this study, six crystal structures have been used to demonstrate that a change in the central angle and/or the central core structure of dicarboxamides can be used to design either a supramolecular helix or a β-sheet.
机译:丙二酰胺的双缬氨酸衍生物(Guha,S。; Drew,M.G.B.Small,2008,4,1993-2005)和1,1-环丙烷二甲酰胺的双缬氨酸衍生物用作构建超分子螺旋结构的基础。形成六元分子内氢键合支架,并且其充当用于构建基于假肽的超分子螺旋结构的独特的超分子合成子。然而,在没有该分子内氢键的情况下,在肽链之间形成了分子间氢键。这导致超分子β-片层结构。正确选择超分子合成子(六元分子内氢键合支架)会促进超分子螺旋的形成,并且与该分子结构的偏离决定了超分子螺旋性的破坏。在这项研究中,已使用六个晶体结构来证明双羧酰胺的中心角和/或中心核结构的变化可用于设计超分子螺旋或β-折叠。

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