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Total Synthesis of Lagunamide A via Remote Vinylogous Mukaiyama Aldol Reactions, Chemical Studies Toward the Total Synthesis of Micromide and Preliminary Studies Toward the Total Synthesis of Azaspirene.

机译:通过遥远的葡萄酒性Mukaiyama Aldol反应进行Lagunamide A的总合成,对杀微生物剂的总合成进行化学研究,对氮杂螺碳烯的总合成进行初步研究。

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摘要

Lagunamide A represents a class of novel cyclic depsipeptide obtained from the marine cyanobacterium Lyngbya majuscula. With an array of biological activity and impressive IC50 values including anti-malarial properties (IC50 0.19-0.91 microM), significant cytotoxic properties against P388 murine leukemia cell lines (IC50 6.4-20.5 nM) and ileocecal colon cancer (1.6 nM), lagunamide A shows promise as an extremely powerful therapeutic agent. Unexpectedly, in a recent total synthesis of lagunamide A an incorrectly assigned configuration of stereochemistry was reported. Moreover, natural lagunamide A was isolated in 0.00012% yield from 15 L (~169 g isolated dry, powdered weight) of the cyanobacterium laden sea grass via arduous processes, reaffirming the need for an economically robust total synthesis to further encourage biological study. In light of this information an efficient alternative total synthesis was proposed. Through this optimized approach the target molecule was synthesized in significantly higher overall yield and greater selectivity. Specifically, remote stereocontrol via two iterative vinylogous Mukaiyama aldol reactions (VMAR) lead to a formal total synthesis of the C27-C45 fragment in record yield. Solution and solid phase peptide coupling methodology to construct the C5-C26 fragment of lagunamide A was explored. An optimized convergent strategy lead to the synthesis of lagunamide A and unveiled interesting chemical studies on Kobayashi's protocol for VMAR, specifically a detailed account of relative rate of reaction for (R) vs. (S)-alpha-substituted aldehyde additions, including an enantiomeric resolution of a small panel of ?-substituted aldehydes and proposed transition states.;Micromide is a cytotoxic alkaloid anti-tumor agent (IC50: 260 nM against KB cells) isolated from Symploca cyanobateria. The focus of this research was to develop an efficient and convergent strategy for the total synthesis of micromide. Key synthetic manipulation involved N-methylation protocol, solution phase peptide coupling and asymmetric acetate aldol reactions. The reported configuration of micromide was not equivalent to that of synthetic micromide, even though LC-MS data demonstrated the correct molecular weight. Epi-micromide was synthesized in ~1% overall yield (103 mg) via solution phase methodology and 7.5% overall yield (50 mg) via solid support methodology. Computational analysis of the 13C NMR data hypothesized that inversion of C35 would reveal the corrected structure for micromide. Preliminary chemical studies towards an expedient synthesis of azaspirene, an effective angiogenesis inhibitor isolated from the soil fungus Neosartorya sp., are proposed from (+)-tartaric acid. An efficient synthetic pathway for theses bioactive molecules could ultimately lead to structural analogs for structure-activity relationship (SAR) studies against various cancer cell lines.
机译:Lagunamide A代表了一类从海洋蓝藻Lyngbya majuscula获得的新型环状二肽。 Lagunamide A具有一系列的生物学活性和令人印象深刻的IC50值,包括抗疟疾特性(IC50 0.19-0.91 microM),针对P388鼠白血病细胞系(IC50 6.4-20.5 nM)和回盲肠结肠癌(1.6 nM)的显着细胞毒性特性,Lagunamide A显示出作为一种非常强大的治疗剂的希望。出乎意料的是,在最近的lagunamide A的全合成中,报告了一个错误分配的立体化学构型。此外,通过艰苦的过程从15升(约169 g分离的干粉状粉末状)载有蓝藻的海草中以0.00012%的收率分离出了天然的拉古酰胺A,重申了经济上可靠的总合成的必要性,以进一步促进生物学研究。根据这些信息,提出了一种有效的替代性全合成方法。通过这种优化方法,可以以更高的总产率和更高的选择性合成目标分子。具体而言,通过两个反复的乙烯基Mukaiyama醛醇缩合反应(VMAR)进行的远程立体控制导致C27-C45片段的正式全合成,收率创纪录。探索了溶液和固相肽偶联方法来构建拉古酰胺A的C5-C26片段。优化的收敛策略导致合成了lagunamide A,并公开了有关Kobayashi VMAR方案的有趣化学研究,特别是详细介绍了(R)与(S)-α-取代醛加成反应的相对反应速率,包括对映体一小部分α-取代的醛和拟议的过渡态的拆分。Micromide是一种细胞毒性生物碱抗肿瘤剂(针对KB细胞的IC50:260 nM),从蓝藻中分离出来。这项研究的重点是开发一种有效和收敛的杀螨剂全合成策略。关键的合成操作涉及N-甲基化方案,溶液相肽偶联和不对称的乙酸羟醛反应。即使LC-MS数据显示了正确的分子量,所报道的杀螨剂构型也不等同于合成杀螨剂。通过溶液相方法合成的Epi-酰亚胺的总收率约为1%(103 mg),而通过固相支持物的合成方法收率为7.5%(50 mg)。对13 C NMR数据的计算分析假设C35的倒置将揭示微酰亚胺的校正结构。提出了从(+)-酒石酸中快速合成合成氮杂灵的有效方法,初步研究是从土壤真菌Neosartorya sp。分离出的一种有效的血管生成抑制剂氮杂阿司匹林。这些生物活性分子的有效合成途径可能最终导致针对各种癌细胞系进行结构-活性关系(SAR)研究的结构类似物。

著录项

  • 作者

    Banasik, Brent Andrew.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Organic chemistry.;Chemistry.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 356 p.
  • 总页数 356
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:48:06

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