Graduate School of Pharmaceutical Sciences, University of Toyama, 2630 Sugitani, Toyama, 930-0194, Japan.
Graduate School of Advanced Science and Engineering, Hiroshima University Higashi-Hiroshima, Hiroshima, 739-8527, Japan.
Chempluschem. 2020 Dec;85(12):2565-2569. doi: 10.1002/cplu.202000603. Epub 2020 Oct 29.
In order to create new functions of foldamer-type hosts, various kinds of recognition arrays are expected to be developed. Here, a pyridine-acetylene-aniline unit is presented as a new class of a saccharide recognition array. The conformational stabilities of this array were analyzed by DFT calculation, and suggested that a pyridine-acetylene-aniline oligomer tends to form a helical structure. An oligomer of this array was synthesized, and its association for octyl β-D-glucopyranoside was confirmed by H NMR measurements. UV/Vis, circular dichroism, and fluorescence titration experiments revealed its high affinity for octyl glycosides in apolar solvents (K =10 to 10 M ). This oligomer was relatively stable under basic conditions, and therefore this array was expected to be applied to the derivatization of saccharides. A 4-(dialkylamino)pyridine attached pyridine-acetylene-aniline oligomer proved to catalyze the acylation of the octyl glucoside.
为了创造 foldamer 型主体的新功能,人们期望开发各种识别阵列。在这里,展示了一个吡啶-乙炔-苯胺单元作为糖识别阵列的新类别。通过 DFT 计算分析了该阵列的构象稳定性,并表明吡啶-乙炔-苯胺低聚物倾向于形成螺旋结构。合成了该阵列的低聚物,并通过 1 H NMR 测量证实了其与辛基 β-D-吡喃葡萄糖苷的缔合。紫外/可见、圆二色性和荧光滴定实验表明,它在非极性溶剂中对辛基糖苷具有高亲和力(K =10 至 10 M )。该低聚物在碱性条件下相对稳定,因此该阵列有望应用于糖的衍生化。连接有 4-(二烷基氨基)吡啶的吡啶-乙炔-苯胺低聚物被证明可以催化辛基葡萄糖苷的酰化反应。