Miyashita Kazuyuki, Ikejiri Masahiro, Kawasaki Hitomi, Maemura Satoko, Imanishi Takeshi
Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Am Chem Soc. 2003 Jul 9;125(27):8238-43. doi: 10.1021/ja030133v.
The total synthesis of an antitumor antibiotic, fostriecin (CI-920), via a highly convergent route is described. A characteristic feature of the present total synthesis is that the synthesis was achieved via a coupling procedure of three segments A, B, and C. The unsaturated lactone moiety of fostriecin, corresponding to segment A, was constructed from a known Horner-Emmons reagent, and the stereochemistry of the C-5 position was introduced by asymmetric reduction with (R)-BINAl-H. Segment B having a series of stereogenic centers was synthesized from (R)-malic acid and the stereogenic centers at the C-8 and C-9 positions were prepared by a combination of Wittig reaction and Sharpless asymmetric dihydroxylation reaction. The conjugated Z,Z,E-triene moiety of fostriecin, corresponding to segment C, was eventually constructed by Wittig reaction and Stille coupling reaction. The phosphate moiety, which is known to be essentially important for the antitumor activity, was introduced via two routes: (i) direct phosphorylation of the monohydroxyl derivative in which other hydroxyl groups are protected with silyl groups; (ii) cyclic phosphorylation and selective cleavage of the cyclic phosphate derivative. Although the former route is basically the same as those reported by other groups, the latter route is novel and more effective than the former one. The present total synthesis would serve as a versatile synthetic route to not only fostriecin, but also its various analogues including stereoisomers.
本文描述了通过高度汇聚的路线全合成抗肿瘤抗生素福司曲星(CI-920)。本全合成的一个特点是通过A、B和C三个片段的偶联过程实现合成。福司曲星中对应于片段A的不饱和内酯部分由一种已知的霍纳尔-埃蒙斯试剂构建,C-5位的立体化学通过用(R)-联萘酚铝进行不对称还原引入。具有一系列手性中心的片段B由(R)-苹果酸合成,C-8和C-9位的手性中心通过维蒂希反应和夏普莱斯不对称二羟基化反应相结合制备。福司曲星中对应于片段C的共轭Z,Z,E-三烯部分最终通过维蒂希反应和施蒂勒偶联反应构建。已知对抗肿瘤活性至关重要的磷酸部分通过两条路线引入:(i)用硅烷基保护其他羟基的单羟基衍生物的直接磷酸化;(ii)环状磷酸化和环状磷酸衍生物的选择性裂解。虽然前一条路线与其他小组报道的基本相同,但后一条路线是新颖的,并且比前一条路线更有效。本全合成不仅将作为合成福司曲星的通用合成路线,而且还将作为合成其各种类似物(包括立体异构体)的通用合成路线。