Liu Qi, An Chihui, TenDyke Karen, Cheng Hongsheng, Shen Young Yongchun, Hoye Adam T, Smith Amos B
Department of Chemistry, Laboratory for Research on the Structure of Matter and Monell Chemical Senses Center, University of Pennsylvania , Philadelphia, Pennsylvania 19104, United States.
Eisai Inc. , 4 Corporate Drive, Andover, Massachusetts 01810, United States.
J Org Chem. 2016 Mar 4;81(5):1930-42. doi: 10.1021/acs.joc.5b02771. Epub 2016 Feb 16.
The design, synthesis, and biological evaluation of irciniastatin A (1) analogues, achieved by removal of three synthetically challenging structural units, as well as by functional group manipulation of the C(11) substituent of both irciniastatins A and B (1 and 2), has been achieved. To this end, we first designed a convergent synthetic route toward the diminutive analogue (+)-C(8)-desmethoxy-C(11)-deoxy-C(12)-didesmethylirciniastatin (6). Key transformations include an acid-catalyzed 6-exo-tet pyran cyclization, a chiral Lewis acid mediated aldol reaction, and a facile amide union. The absolute configuration of 6 was confirmed via spectroscopic analysis (CD spectrum, HSQC, COSY, and ROESY NMR experiments). Structure-activity relationship (SAR) studies of 6 demonstrate that the absence of the three native structural units permits access to analogues possessing cytotoxic activity in the nanomolar range. Second, manipulation of the C(11) position, employing late-stage synthetic intermediates from our irciniastatin syntheses, provides an additional five analogues (7-11). Biological evaluation of these analogues indicates a high functional group tolerance at position C(11).
通过去除三个合成上具有挑战性的结构单元以及对irciniastatin A和B(1和2)的C(11)取代基进行官能团操作,实现了irciniastatin A(1)类似物的设计、合成及生物学评价。为此,我们首先设计了一条通向小型类似物(+)-C(8)-去甲氧基-C(11)-脱氧-C(12)-二去甲基irciniastatin(6)的汇聚合成路线。关键转化包括酸催化的6-外向-四环吡喃环化反应、手性路易斯酸介导的羟醛反应以及简便的酰胺偶联反应。通过光谱分析(CD光谱、HSQC、COSY和ROESY NMR实验)确定了6的绝对构型。对6的构效关系(SAR)研究表明,三个天然结构单元的缺失使得能够获得具有纳摩尔级细胞毒性活性的类似物。其次,利用我们irciniastatin合成中的后期合成中间体对C(11)位置进行操作,又得到了另外五个类似物(7 - 11)。对这些类似物的生物学评价表明,C(11)位置具有较高的官能团耐受性。