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通过全合成实现的发现:关于西他司他汀问题的回顾

Discovery through total synthesis: a retrospective on the himastatin problem.

作者信息

Kamenecka T M, Danishefsky S J

机构信息

Laboratory for Bioorganic Chemistry, Sloan-Kettering Institute for Cancer Research, New York, NY 10021, USA.

出版信息

Chemistry. 2001 Jan 5;7(1):41-63. doi: 10.1002/1521-3765(20010105)7:1<41::aid-chem41>3.0.co;2-d.

Abstract

A total synthesis of a structure proposed for himastatin was accomplished. The non-identity of the fully synthetic material with himastatin necessitated a revision of the assigned structure. Confirmation of the revised stereostructure was subsequently confirmed through total synthesis. Among the achievements during this effort were i) stereospecific routes to both anti-cis and syn-cis pyrrolindoline substructures; ii) a practical synthesis to 5-hydroxypiperazic acid in enantiomerically pure form; iii) a Stille coupling leading to a complex bi-indole moiety, and iv) efficient protecting group management throughout the evolving depsipeptide domain. The outlines for a biological pharmacophore have been delineated. The alternating D- and L-substituents in the 6-mer as well as the biaryl linkage connecting the two identical subunits are critical for maintaining biological activity. This pattern is simulated in another antibiotic, and suggests a possible structural trend for future SAR investigations.

摘要

完成了对海他他汀提出的一种结构的全合成。全合成材料与海他他汀不一致,因此需要对指定结构进行修正。随后通过全合成确认了修正后的立体结构。在此过程中的成果包括:i)合成反式-顺式和顺式-顺式吡咯啉二氢吲哚亚结构的立体专一性路线;ii)对映体纯形式的5-羟基哌嗪酸的实用合成;iii)通过施蒂勒偶联生成复杂的双吲哚部分;iv)在不断演变的环肽结构域中进行有效的保护基管理。已经勾勒出生物药效团的轮廓。六聚体中交替的D-和L-取代基以及连接两个相同亚基的联芳基键对于维持生物活性至关重要。这种模式在另一种抗生素中得到模拟,并为未来的构效关系研究暗示了一种可能的结构趋势。

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