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Total Synthesis of Cleistrioside/Cleistetroside Analogues, Aminoglycoside Antibiotics and Their Structure Activity Relationship Study.

机译:香菇甙/油香菇苷类似物,氨基糖苷类抗生素的全合成及其结构活性关系的研究。

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摘要

The carbohydrate portion of natural products plays an important role in their biological activity. The Doherty group has been developing de novo methodologies to build the desired carbohydrate functionality and stereochemistry within each sugar from simple achiral starting materials. The methodologies depend on a highly diastereoselective palladium-catalyzed glycosylation reaction to control the anomeric stereochemistry, and a highly enantioselective Noyori reduction to install the sugar absolute stereochemistry. Appropriate post-glycosylation transformations can create the remaining stereochemistry in the sugar moiety.;To uncover the key structure component important for the biological activity of the cleistrioside/cleistetroside/mezzettiaside natural products, synthesis and SAR study was carried out. The guiding hypothesis of this aim is to find and understand the critical structural element that is responsible and required for the induction of their biological responses in both antibacterial and anticancer activity. Target compounds were successfully synthesized, and then tested for antibacterial and anticancer activities. These studies revealed that although these acylated oligo-rhamnoside natural products contain structural similarities, they showed different antibacterial and anticancer activities, which implied the importance of acylation of carbohydrates and sugar chain length. Based on the finding of antibacterial activity from the reduced sugar chain (dirhamnoside) derivative, a potent lead compound for the further optimization as an antibacterial agent was discovered.;To continue the effort in SAR study and improvement of the biological activities of these oligosaccharide natural products currently found, a series of new derivatives have been synthesized and their biological activities were evaluated with a particular interest in studying the effect of C4-acetate group in their presence and stereochemistry. For instance, four 1,4-alpha- manno-disaccharides and their C4-acetated analogues were synthesized, as well as eight 1,4-alpha-manno-trisaccharides and their C4-acetated analogues by using our palladium-catalyzed glycosylation. While the bactericidal effects of aminoglycosides are well understood, their therapeutic potential in human cells is emerging. Based on the de novo approach to carbohydrates developed in our group, we are attempting the synthesis of novel aminoglycosides with replacement of one or both sugars in known aminoglycosides. Toward this end, the key intermediate has already been synthesized, and the late bidirectional coupling of the sugar motif is under investigation.
机译:天然产物的碳水化合物部分在其生物活性中起重要作用。 Doherty小组一直在开发从头开始的方法,以从简单的非手性起始原料中在每种糖中建立所需的碳水化合物功能和立体化学。该方法学依赖于高度非对映选择性的钯催化的糖基化反应来控制异头立体化学,以及高度对映选择性的Noyori还原以安装糖绝对立体化学。适当的糖基化后转化可以在糖部分中产生剩余的立体化学。为了揭示对秋水仙苷/秋水仙油苷/美zzettiaside天然产物的生物活性重要的关键结构成分,进行了合成和SAR研究。该目标的指导性假设是找到并了解在抗菌和抗癌活性中诱导其生物学应答的负责和必需的关键结构要素。目标化合物已成功合成,然后进行了抗菌和抗癌活性测试。这些研究表明,尽管这些酰化的鼠李糖苷天然产物具有结构相似性,但它们显示出不同的抗菌和抗癌活性,这暗示了酰化碳水化合物和糖链长度的重要性。基于还原糖链(地黄菊酯)衍生物的抗菌活性发现,发现了一种有效的先导化合物,可进一步优化作为抗菌剂。;;继续进行SAR研究,并改善这些天然寡糖的生物学活性在目前发现的产品中,已经合成了一系列新的衍生物,并对它们的生物学活性进行了评估,尤其对研究C4-乙酸酯基团在它们的存在和立体化学中的作用感兴趣。例如,通过使用钯催化的糖基化反应,合成了四个1,4-α-甘露糖二糖及其C4乙酰化类似物,以及八个八个1,4-α-甘露糖三糖及其C4乙酰化类似物。尽管氨基糖苷的杀菌作用已广为人知,但它们在人细胞中的治疗潜力正在显现。基于我们小组中从头开发的碳水化合物方法,我们正在尝试合成新的氨基糖苷,用已知的氨基糖苷中的一种或两种糖替代。为此,关键中间体已经合成,糖基序的后期双向偶联正在研究中。

著录项

  • 作者

    Shi, Pei.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Biochemistry.;Chemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 308 p.
  • 总页数 308
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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