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Structure elucidation of bioactive natural products from Madagascar marine algae and cyanobacteria.

机译:马达加斯加海藻和蓝细菌的生物活性天然产物的结构解析。

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摘要

This thesis is an investigation of the natural products deriving from marine algae and cyanobacteria and has resulted in the discovery of eleven new secondary metabolites. The structure elucidations of these new molecules were performed using a variety of spectroscopic techniques.; Four new macrolides were isolated and characterized from the Madagascar marine cyanobacterium Geitlerinema sp. These ankaraholides are structurally similar to the potently cytotoxic swinholides and were found to have cytotoxicities ranging from 178 nM to 354 nM against human lung cancer (NCI-H460) and mouse neuro-2a cell lines. Since swinholide-type compounds were previously localized to the heterotrophic bacteria of sponges, these findings raise intriguing questions about their true metabolic source.; Geitlerinema sp. was found to be particularly rich in chemistry, and also produced the new linear lipopeptide mitsoamide with unusual structural features including an aminal moiety, a homolysine residue and a polyketide unit (3,7-dimethoxy-5-methyl-nonanedioic acid) (DMNA).; A collection of the red marine alga Portieria hornemannii from the south of Madagascar (Tolagniaro, Fort Dauphin), led to the isolation of the previously reported halogenated monoterpene, halomon, and the discovery of three new related metabolites. These molecules were found to inhibit DNA methyltransferase 1 (DNMT-1).; As a result of efforts to identify bioactive agents from the marine cyanobacterium Lyngbya majuscula, tanikolide dimer, a novel SIRT2 inhibitor (IC 50 = 176 nM), and tanikolide seco-acid were isolated. The depside molecular structure of tanikolide dimer, which is likely a meso compound, was established by NMR, MS and chiral HPLC analyses. The structure of tanikolide dimer raises a number of intriguing configurational and biosynthetic questions for further study.; The bioassay guided fractionation of a collection of the brown marine alga Dictyota sp. from Netherland Antilles Playa Fort, led to the identification of a novel HDAC inhibitor with a dolastane carbon skeleton. The novel molecule was also found to possess antimalarial activity. Other known HDAC inhibitors with interesting antimalarial activity have been reported previously, and based on this efficacy against malaria, HDAC appears to be a viable target for the development of antiparasitic agents.
机译:本文是对源自海藻和蓝细菌的天然产物的研究,并导致发现了11种新的次生代谢产物。使用多种光谱技术对这些新分子进行了结构解析。从马达加斯加海洋蓝藻Geitlerinema sp中分离并鉴定了四个新的大环内酯类。这些安卡拉霍利酯在结构上与有效的细胞毒性甘露醇类似,并且被发现对人肺癌(NCI-H460)和小鼠神经2a细胞系的细胞毒性范围为178 nM至354 nM。由于swinholide类型的化合物以前被定位在海绵的异养细菌中,因此这些发现提出了有关其真正代谢来源的有趣问题。 Geitlerinema sp。被发现具有特别丰富的化学性质,并且还生产了具有线性结构特征的新型线性脂肽三甲酰胺,包括氨基部分,高赖氨酸残基和聚酮化合物单元(3,7-二甲氧基-5-甲基-壬二酸)(DMNA) 。;来自马达加斯加南部的红色海藻Porteeria hornemannii的收藏(Tolagniaro,Dauphin堡),导致先前报道的卤化单萜,卤代烷的分离,并发现了三种新的相关代谢物。发现这些分子抑制DNA甲基转移酶1(DNMT-1)。作为努力从海洋蓝藻Lyngbya majuscula鉴定生物活性剂的结果,分离了tanikolide二聚体,新型SIRT2抑制剂(IC 50 = 176 nM)和tanikolide癸二酸。通过NMR,MS和手性HPLC分析建立了可能为内消旋化合物的tanikolide二聚体的分子侧结构。 tanikolide二聚体的结构提出了许多有趣的构型和生物合成问题,需要进一步研究。生物测定法指导收集了棕色海藻Dictyota sp。的一部分。来自荷兰安的列斯群岛普拉亚堡的研究人员鉴定了一种具有十二碳烷骨架的新型HDAC抑制剂。还发现该新型分子具有抗疟活性。先前已经报道了其他具有有趣的抗疟疾活性的已知HDAC抑制剂,基于这种抗疟疾的功效,HDAC似乎是开发抗寄生虫剂的可行目标。

著录项

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Chemistry Pharmaceutical.; Chemistry Organic.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药物化学;有机化学;生物化学;
  • 关键词

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