Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Technion City, Haifa 32000, Israel. szpilman@ tx.technion.ac.il
Angew Chem Int Ed Engl. 2010 Dec 10;49(50):9592-628. doi: 10.1002/anie.200904761.
The systematic modification of natural products through diverted total synthesis is a powerful concept for the systematic modification of natural products with the aim of studying mechanistic aspects of their biological activity. This concept offers far-reaching opportunities for discovery at the interface of biology and chemistry. It is underpinned by the power of chemical synthesis, which manifests itself in the ability to modify structure at will. Its implementation, when combined with innovative design, enables the preparation of unique mechanistic probes that can be decisive in differentiating and validating biological hypotheses at the molecular level. This Review assembles a collection of classic and current cases that illustrate and underscore the scientific possibilities for practitioners of chemical synthesis.
通过衍生的全合成对天然产物进行系统修饰是一个强大的概念,可用于有目的地对天然产物进行系统修饰,以研究其生物活性的机制方面。这一概念为生物学和化学的交叉领域的发现提供了广阔的机会。它的基础是化学合成的力量,这种力量表现在随心所欲地修饰结构的能力上。当与创新设计相结合时,它的实施使制备独特的机制探针成为可能,这些探针可以在分子水平上对区分和验证生物假设起到决定性作用。本文综述汇集了一系列经典和当前的案例,说明了并强调了化学合成从业者的科学可能性。