Department of Chemistry and the Skaggs Institute for Chemical Biology, The Scripps Research Institute , 10550 North Torrey Pines Road, La Jolla, California 92037, United States.
J Am Chem Soc. 2014 Feb 5;136(5):2119-25. doi: 10.1021/ja412298c. Epub 2014 Jan 21.
Total syntheses of (-)-pyrimidoblamic acid and P-3A are disclosed. Central to the convergent approach is a powerful inverse electron demand Diels-Alder reaction between substituted electron-deficient 1,2,3-triazines and a highly functionalized and chiral primary amidine, which forms the pyrimidine cores and introduces all necessary stereochemistry in a single step. Intrinsic in the convergent approach is the potential it provides for the late stage divergent synthesis of modified analogs bearing deep-seated changes in either the pyrimidine cores or the highly functionalized C2 side chain common to both natural products. The examination of the key cycloaddition reaction revealed that the inherent 1,2,3-triazine mode of cycloaddition (C4/N1 vs C5/N2) as well as the amidine regioselectivity were unaffected by introduction of two electron-withdrawing groups (-CO2R) at C4 and C6 of the 1,2,3-triazine even if C5 is unsubstituted (Me or H), highlighting the synthetic potential of the powerful pyrimidine synthesis.
本文披露了(-)-嘧啶布来姆酸和 P-3A 的全合成。该汇聚方法的核心是取代的缺电子 1,2,3-三嗪和高度官能化和手性伯脒之间的强大逆电子需求 Diels-Alder 反应,该反应一步形成嘧啶核心并引入所有必要的立体化学。汇聚方法的内在特点是为后期的分歧合成提供了潜力,这些合成可以对嘧啶核心或两个天然产物共有的高度官能化的 C2 侧链进行深层次的改变,从而生成修饰的类似物。对关键环加成反应的考察表明,固有的 1,2,3-三嗪环加成模式(C4/N1 与 C5/N2)以及脒的区域选择性不受在 1,2,3-三嗪的 C4 和 C6 上引入两个吸电子基团(-CO2R)的影响,即使 C5 未取代(Me 或 H),这突出了强大的嘧啶合成的合成潜力。