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Total synthesis and structure-activity relationship studies of antifungal peptidyl nucleoside antibiotics.

机译:抗真菌肽基核苷抗生素的全合成及其构效关系研究。

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摘要

Part I. Total synthesis and structure-activity relationship studies of pyranosyl nikkomycin B and analogs. Through potent and selective inhibition of chitin synthase, the complex peptidyl nucleoside antibiotic nikkomycin B exhibits impressive antifungal activity against a variety of human pathogenic fungi. As the chitin biosynthetic pathway is absent in humans, chitin synthase inhibitors represent potential leads for the development of new generations of safe and more efficacious antifungal therapeutic agents.; In a hitherto unexplored structure-activity relationship study of the nikkomycins, the present research is directed at investigating the role of the carbohydrate ring size of the above natural products on their biological activity. Accordingly, the results of a study involving design, synthesis and biological evaluation of a carbohydrate ring-expanded pyranosyl analog of nikkomycin B are described in the first chapter of the thesis.; The synthesis was accomplished by separate construction of the amino acid side chain and the pyranosyl nucleoside segment of the target nikkomycin analog. Subsequent peptidic coupling of these components provided the desired product. A key element in the above synthetic strategy entailed utilization of D-serine towards rapid and efficient synthesis of a strategic aminopyranone intermediate, followed by de novo construction of the pyranosyl amino acid nucleoside segment on this versatile chiral platform.; The above synthetic route was also extended to obtain various side chain-modified 'second generation' analogs of pyranosyl nikkomycin B. Upon biological evaluation of the above compounds against a variety of clinically significant pathogenic fungi, several analogs demonstrated equipotent or increased antifungal activity compared to the parent natural product.; Part II. Studies toward the total synthesis of amipurimycin. The complex peptidyl nucleoside Amipurimycin is an antifungal natural product with a uniquely substituted pyranosyl sugar core. Insufficient biological information on the mode of its action, and the lack of any total synthetic route to amipurimycin prompted us to initiate a total synthesis of this bioactive natural product.; Thus, starting from the chiral aminopyranone intermediate as developed during my earlier studies, a stereoselective synthesis of the fully functionalized, C3-branched pyranosyl amino acid core of amipurimycin could be achieved. Unfortunately, numerous attempts to incorporate the desired 2-aminopurine nucleobase towards formation of the corresponding nucleoside remained unsuccessful. It was however possible to introduce a simpler pyrimidine nucleobase (thymine) onto the amipurimycin sugar core, resulting in a thymine analog of amipurimycin. Subsequent coupling of the above nucleoside component with the cispentacin side chain, as present in amipurimycin, culminated in the total synthesis of an unnatural 'thymine amipurimycin' analog.
机译:第一部分。吡喃糖基尼古霉素B及其类似物的总合成及构效关系研究。通过有效和选择性地抑制几丁质合酶,复杂的肽基核苷抗生素尼克霉素B对多种人类病原真菌表现出令人印象深刻的抗真菌活性。由于在人类中不存在甲壳质的生物合成途径,因此甲壳质合酶抑制剂代表了开发新一代安全,有效的抗真菌治疗剂的潜在先导。在迄今为止对尼古霉素的未探索的结构-活性关系的研究中,本研究旨在研究上述天然产物的糖环大小对其生物学活性的作用。因此,在第一章中描述了涉及尼古霉素B的糖环扩展吡喃糖基类似物的设计,合成和生物学评估的研究结果。通过分别构建靶尼克霉素类似物的氨基酸侧链和吡喃糖基核苷区段来完成合成。这些组分的后续肽偶联提供了所需的产物。上述合成策略中的关键要素是利用D-丝氨酸快速有效地合成策略性氨基吡喃酮中间体,然后在该通用手性平台上从头构建吡喃糖基氨基酸核苷片段。还扩展了上述合成途径以获得吡喃糖基尼古霉素B的各种侧链修饰的“第二代”类似物。根据上述化合物对多种临床上显着的致病真菌的生物学评估,与之相比,数种类似物表现出同等效力或增加的抗真菌活性。母天然产品。第二部分对阿米霉素的全合成的研究。复杂的肽基核苷Amipurimycin是一种抗真菌天然产品,具有独特取代的吡喃糖基糖芯。关于其作用方式的生物学信息不足,以及缺少任何合成的阿霉素霉素的合成途径,都促使我们开始对该生物活性天然产物进行完全合成。因此,从我在较早的研究中开发的手性氨基吡喃酮中间体开始,可以实现全功能的阿米普霉素C3支链吡喃糖基氨基酸核的立体选择性合成。不幸的是,许多尝试并入所需的2-氨基嘌呤核苷碱基以形成相应的核苷的尝试仍未成功。然而,有可能将较简单的嘧啶核苷碱基(胸腺嘧啶)引入阿米普霉素糖核上,从而得到阿米普霉素的胸腺嘧啶类似物。随后将上述核苷成分与阿米普霉素中存在的顺喷丝菌素侧链偶联,最终合成了一个非天然的“胸腺嘧啶阿米普霉素”类似物。

著录项

  • 作者

    Stauffer, Christina S.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Chemistry Organic.; Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;药物化学;
  • 关键词

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