Itoh Hiroaki
Graduate School of Pharmaceutical Sciences, The University of Tokyo.
Yakugaku Zasshi. 2022;142(6):561-571. doi: 10.1248/yakushi.22-00042.
This review focuses on a new solid-phase synthetic strategy for an anticancer natural product yaku'amide B (1) and its target identification and structure-function relationship study using synthetic analogues and probes. To realize the Fmoc-based solid-phase synthesis of 1, we developed new synthetic methods for enamide formation. Namely, modified traceless Staudinger ligation using alkenyl azides and newly designed phosphinophenol esters enabled stereoselective construction of the (E)- and (Z)-ΔIle moieties. Furthermore, resin-cleavage and C-terminus modification were simultaneously achieved with an ester-amide exchange reaction using C-terminal amine and AlMe, which successfully afforded 1 via a full solid-phase route. The developed strategy was applied to the construction of seven E/Z isomers of 1. In the target identification of 1, fluorescent imaging study and affinity pull-down assay using the synthetic probes revealed that 1 exerts potent cytostatic activity by binding to subunits α and β of mitochondrial FF-ATP synthase. On the basis of the mode of action of 1, we conducted biological evaluation of the seven E/Z-isomers of 1. Assessment of growth inhibition activity and the effect on FF-ATP synthase indicates that the E/Z-stereochemistry of the three ΔIle residues controls the magnitude of biological functions of 1.
本综述聚焦于抗癌天然产物矢车酰胺B(1)的一种新的固相合成策略,以及使用合成类似物和探针进行的靶点鉴定及其结构-功能关系研究。为实现基于Fmoc的1的固相合成,我们开发了烯酰胺形成的新合成方法。具体而言,使用烯基叠氮化物的改良无痕施陶丁格连接反应和新设计的膦酰基苯酚酯能够立体选择性地构建(E)-和(Z)-ΔIle部分。此外,通过使用C端胺和AlMe的酯-酰胺交换反应同时实现了树脂裂解和C端修饰,通过全固相路线成功得到了1。所开发的策略被应用于构建1的七种E/Z异构体。在1的靶点鉴定中,使用合成探针的荧光成像研究和亲和下拉分析表明,1通过与线粒体F₀F₁-ATP合酶的α和β亚基结合发挥强大的细胞生长抑制活性。基于1的作用模式,我们对1的七种E/Z异构体进行了生物学评估。生长抑制活性评估以及对F₀F₁-ATP合酶的影响表明,三个ΔIle残基的E/Z立体化学控制着1的生物学功能的大小。