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(+)-氯内酯的全合成。

Total synthesis of (+)-chloriolide.

机构信息

Organic Chemistry Laboratory, University of Bayreuth , 95440 Bayreuth, Germany.

出版信息

J Org Chem. 2014 May 2;79(9):4038-42. doi: 10.1021/jo500527g. Epub 2014 Apr 15.

Abstract

(+)-Chloriolide, a metabolite of the ascomycete Chloridium virescens var. chlamydosporum, was synthesized in 16 linear steps from cellulose as a source of a levoglucosenone that contributed the (Z)-alkene and the R stereocenter. The attachment of a spacer derived from l-lactate gave an ω-hydroxyacetal which was added to the phosphorus ylide Ph3PCCO. The resulting ester ylide was treated with hydrochloric acid to liberate the hemiacetal shown. Addition of sodium hydroxide regenerated the corresponding ylide, which underwent a spontaneous intramolecular Wittig olefination to afford (+)-chloriolide in 65% yield without the necessity of high-dilution conditions. This is the third synthesis of (+)-chloriolide and the first one ever of a macrolide by a ring-closing Wittig olefination of a stabilized phosphorus ylide bearing an ω-hemiacetal. Our synthetic sample exhibited moderate cytotoxicity against cancer cells but no antimicrobial activity against Staphylococcus aureus.

摘要

(+)-Chloriolide 是一种曲霉属 Chloridium virescens var. chlamydosporum 的代谢产物,由纤维素合成,经过 16 步线性反应,其中用到了左旋葡聚糖酮作为(Z)-烯烃和 R 立体中心的前体。通过连接一个来自 L-乳酸的间隔基得到了 ω-羟基缩醛,然后将其与磷叶立德 Ph3PCCO 加成。所得的酯叶立德用盐酸处理,释放出所示的半缩醛。加入氢氧化钠再生相应的叶立德,该叶立德会自发进行分子内 Wittig 烯烃化反应,以 65%的收率得到(+)-Chloriolide,而无需采用高稀释条件。这是(+)-Chloriolide 的第三次合成,也是首次通过稳定的磷叶立德的环 closing Wittig 烯烃化反应合成大环内酯,该磷叶立德带有 ω-半缩醛。我们的合成样品对癌细胞表现出中等的细胞毒性,但对金黄色葡萄球菌没有抗菌活性。

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