Paterson Ian, Ashton Kate, Britton Robert, Cecere Giuseppe, Chouraqui Gaëlle, Florence Gordon J, Knust Henner, Stafford Jonathan
University Chemical Laboratory, Lensfield Road, Cambridge, CB2 1EW, UK.
Chem Asian J. 2008 Feb 1;3(2):367-87. doi: 10.1002/asia.200700357.
A stereocontrolled total synthesis of the microfilament-destabilizing cytotoxic macrolide (-)-reidispongiolide A, isolated from the New Caledonian marine sponge Reidispongia coerulea, is described. This synthesis utilizes a convergent aldol-based strategy to construct the 26-membered macrolactone, followed by the late-stage coupling of a derived aldehyde with an N-vinylformamide-containing ketone subunit to install the full side chain. Two alternative routes were examined for the introduction of the 2E,4E-dienoate region, and a complex Mukaiyama aldol coupling was used to connect the northern and southern hemispheres to install the C13 stereocenter. This constitutes the first chemical synthesis of any member of the reidispongiolide/sphinxolide family of marine macrolides and unequivocally establishes the relative and absolute configuration.
本文描述了从新喀里多尼亚海洋海绵Reidispongia coerulea中分离得到的微丝去稳定化细胞毒性大环内酯(-)-reidispongiolide A的立体控制全合成。该合成利用基于收敛性羟醛反应的策略构建26元大环内酯,然后将衍生的醛与含N-乙烯基甲酰胺的酮亚基进行后期偶联以安装完整的侧链。研究了引入2E,4E-二烯酸酯区域的两条替代路线,并使用复杂的 Mukaiyama 羟醛偶联反应连接大环内酯的北部和南部区域以构建C13立体中心。这是reidispongiolide/sphinxolide家族海洋大环内酯中任何成员的首次化学合成,并明确确定了其相对和绝对构型。