首页> 外文期刊>Journal of the American Chemical Society >Pyrrolic Tripodal Receptors Effectively Recognizing Monosaccharides. Affinity Assessment through a Generalized Binding Descriptor
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Pyrrolic Tripodal Receptors Effectively Recognizing Monosaccharides. Affinity Assessment through a Generalized Binding Descriptor

机译:有效识别单糖的吡咯三脚架受体。通过广义绑定描述符进行亲和力评估

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Pyrrolic and imino (3) or amino (4) H-bonding ligands were incorporated into a benzene-based tripodal scaffold to develop a new generation of receptors for molecular recognition of carbohydrates. Receptors 3 and 4 effectively bound a set of octylglycosides of biologically relevant monosaccharides, including glucose (Glc), galactose (Gal), mannose (Man), and N-acetyl-glucosamine (GlcNAc), showing micromolar affinities in CDCl_3 and millimolar affinities in CD_3CN by NMR titrations. Both receptors selectively recognized Glc among the investigated monosaccharides, with 3 generally less effective than 4 but showing selectivities for the all-equatorial β-glycosides of Glc and GlcNAc among the largest reported for H-bonding synthetic receptors. Selectivities in CDCl_3 spanned a range of nearly 250-fold for 3 and over 30-fold for 4. Affinities and selectivities were univocally assessed through the BC_(50) descriptor, for which a generalized treatment is described that extends the scope of the descriptor to include any two-reagent host-guest system featuring any number of binding constants. ITC titrations of βGlc in acetonitrile evidenced, for both receptors, a strong enthalpic contribution to the binding interaction, suggesting multiple H bonding. Selectivity trends toward aGIc and βGlc analogous to those obtained in solution were also observed in the gas phase for 3 and 4 by collision-induced dissociation experiments. From comparison with appropriate reference compounds, a substantial contribution to carbohydrate binding emerged for both the imino/amino and the pyrrolic H-bonding groups but not for the amidic group. This previously undocumented behavior, supported by crystallographic evidence, has been discussed in terms of geometric, functional, and coordinative complementarity between H-bonding groups and glycosidic hydroxyls and opens the way to a new designer strategy of H-bonding receptors for carbohydrates.
机译:将吡咯和亚氨基(3)或氨基(4)的H键配体结合到基于苯的三脚架中,以开发出新一代的碳水化合物分子识别受体。受体3和4有效结合一组生物学上相关的单糖的辛基糖苷,包括葡萄糖(Glc),半乳糖(Gal),甘露糖(Man)和N-乙酰基葡萄糖胺(GlcNAc),显示出CDCl_3中的微摩尔亲和力和CDCl_3中的毫摩尔亲和力通过NMR滴定测定CD_3CN。两种受体在所研究的单糖中选择性识别Glc,其中3种通常不如4种有效,但显示出对Hlc键合成受体最大的报道是对Glc和GlcNAc的全赤道β-糖苷具有选择性。 CDCl_3的选择性在3范围内接近250倍,在4范围内超过30倍。亲和力和选择性通过BC_(50)描述符进行了唯一评估,描述了一种广义处理方法,将描述符的范围扩展至包括具有任意数量的结合常数的任何两种试剂的主客体系统。乙腈中βGlc的ITC滴定证明,对于两种受体,焓对结合相互作用都有很强的贡献,表明存在多个H键。通过碰撞诱导的离解实验,在气相中对于3和4也观察到了与溶液中类似的对aGIc和βGlc的选择性趋势。通过与适当的参考化合物进行比较,对于亚氨基/氨基和吡咯H键基团都对碳水化合物的结合产生了实质性贡献,而对于酰胺基团则没有。在晶体学证据的支持下,这种先前未记录的行为已在氢键基团和糖苷羟基之间的几何,功能和配位互补性方面进行了讨论,并为碳水化合物的氢键受体的新设计者策略开辟了道路。

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