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Synthesis of Orthogonally Protected Cyclic Homooligomers from Sugar Amino Acids

机译:由糖氨基酸合成正交保护的环状均聚物

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摘要

Two new families of orthogonally protected cyclic homooligomers with two to four sugar units were synthesized from pyranoid sugar amino acids.Cyclic oligomers composed of amide-linked sugar amino acids (1-3) were prepared by cyclization of linear oligomers of the novel orthogonally protected pyranoid sugar amino acid 12 using a solution-phase coupling method.These orthogonally protected cyclic molecules can be selectively or fully deprotected,affording the macrocycles ready to further functionalization.The straightforward reduction of the amide bonds in the cyclic oligomers 1-3 gave the corresponding amine-linked macrocycles 4-6.This kind of amine-linked carbohydrate-based cyclic oligomer has never been reported before.These flexible molecular receptors could be studied as molecular hosts for molecular,cationic,and anionic recognition.Conformational analysis by molecular modeling (AMI) showed that all of the deprotected cyclic trimers and tetramers preferred a ~4C_1 chair conformation with oxygen atoms of the sugar ring located on the interior of the cavity and the secondary hydroxyl groups outward.In the amide-linked macrocycles,all of the amide bonds are in s-trans conformation.The estimated size of the internal cavity is about 4.5 A for the cyclic trimer and 6.9 A for the cyclic tetramer.The amine-linked macrocydes displayed similar conformational behavior with a slight decrease in internal cavity.
机译:从吡喃糖基糖氨基酸合成了两个新的具有2-4个糖单元的正交保护的环状均聚物,并通过环化新型正交保护的吡喃糖基的线性低聚物制备了由酰胺连接的糖氨基酸(1-3)组成的环状低聚物。糖氨基酸12采用溶液-相偶联方法。这些正交保护的环状分子可以选择性或​​完全脱保护,以备大环准备进一步官能化。环状低聚物1-3中酰胺键的直接还原得到相应的胺-连接大环化合物4-6。这种基于胺连接的碳水化合物基环状低聚物尚未见过报道。这些灵活的分子受体可以用作分子识别,阳离子识别和阴离子识别的分子宿主。 )表明所有脱保护的环状三聚体和四聚体均优选〜4C_1椅子构象糖环的氧原子位于空腔内部,仲羟基向外。在酰胺连接的大环中,所有酰胺键均呈s-反式构型。内部空腔的估计尺寸约为4.5环状三聚体为A,环状四聚体为6.9A。胺连接的大环胞显示相似的构象行为,内腔略有减少。

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  • 来源
    《The Journal of Organic Chemistry》 |2005年第11期|p.4423-4430|共8页
  • 作者单位

    Synthese,Structure et Function des Molecules Bioactives,CNRS UMR 7613,Universite Pierre et Marie Curie,4 Place Jussieu,F- 75005 Paris,France,Laboratoire de Synthese Asymetrique,CNRS UMR 7611,Universite Pierre et Marie Curie,4 Place Jussieu,F-75005 Pa;

    Synthese,Structure et Function des Molecules Bioactives,CNRS UMR 7613,Universite Pierre et Marie Curie,4 Place Jussieu,F- 75005 Paris,France,Laboratoire de Synthese Asymetrique,CNRS UMR 7611,Universite Pierre et Marie Curie,4 Place Jussieu,F-75005 Pa;

    Synthese,Structure et Function des Molecules Bioactives,CNRS UMR 7613,Universite Pierre et Marie Curie,4 Place Jussieu,F- 75005 Paris,France,Laboratoire de Synthese Asymetrique,CNRS UMR 7611,Universite Pierre et Marie Curie,4 Place Jussieu,F-75005 Pa;

    Synthese,Structure et Function des Molecules Bioactives,CNRS UMR 7613,Universite Pierre et Marie Curie,4 Place Jussieu,F- 75005 Paris,France,Laboratoire de Synthese Asymetrique,CNRS UMR 7611,Universite Pierre et Marie Curie,4 Place Jussieu,F-75005 Pa;

    Synthese,Structure et Function des Molecules Bioactives,CNRS UMR 7613,Universite Pierre et Marie Curie,4 Place Jussieu,F- 75005 Paris,France,Laboratoire de Synthese Asymetrique,CNRS UMR 7611,Universite Pierre et Marie Curie,4 Place Jussieu,F-75005 Pa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

  • 入库时间 2022-08-18 00:03:09

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