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Callipeltosides A, B and C: Total Syntheses and Structural Confirmation

机译:ip树苷A,B和C:总合成和结构确认

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Since their isolation almost 20years ago, the callipeltosides have been of long standing interest to the synthetic community owing to their unique structural features and inherent biological activity. Herein we present our full research effort that has led to the synthesis of these molecules. Key aspects of our final strategy include 1)synthesis of the C1-C9 pyran core (5) using an AuCl3-catalysed cyclisation; 2)formation of C10-C22 vinyl iodide (55) by sequential bidirectional Stille reactions and 3)diastereoselective union of these advanced fragments by means of an alkenylzinc addition (d.r.=91:9 at C9). The common callipeltoside aglycon (4) was completed in a further five steps. Following this, all three sugar fragments were appended to provide the entire callipeltoside family. In addition to this, D-configured callipeltoseB was synthesised and appended to the callipeltoside aglycon. The (HNMR)-H-1 spectrum of this molecule was found to be significantly different to the natural isolate, further supporting our assignment of callipeltosideB (2).
机译:自其将近20年前被隔离以来,由于其独特的结构特征和固有的生物学活性,愈伤组织一直备受合成界的关注。本文中,我们介绍了导致这些分子合成的完整研究成果。我们最终策略的关键方面包括:1)使用AuCl3催化的环化反应合成C1-C9吡喃核(5); 2)通过顺序双向Stille反应形成C10-C22乙烯基碘化物(55),以及3)通过烯基锌加成(在C9的d.r. = 91:9)对这些高级片段进行非对映选择性结合。普通的卡培普妥糖苷配基(4)在另外五个步骤中完成。此后,将所有三个糖片段附加在一起,以提供整个卡培普妥家族。除此之外,还合成了D-构型的callipeltoseB,并将其附加到callipeltoside糖苷配基上。发现该分子的(HNMR)-H-1谱图与天然分离物显着不同,进一步支持了我们对CallipeltosideB的分配(2)。

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