Department of Chemistry, Texas A&M University, College Station, Texas 77842-3012, USA.
Nat Prod Rep. 2014 Mar;31(3):318-34. doi: 10.1039/c3np70087a.
Bioactive natural products and derivatives remain an enduring starting point for the discovery of new cellular targets for disease intervention and lead compounds for the development of new therapeutic agents. The former goal is accomplished through the synthesis of bioactive cellular probes from natural products, enabling insights into the mechanism of action of these natural products by classical affinity chromatography or more recent proteome profiling methods. However, the direct and selective modification of native natural products for these purposes remains a challenge due to the structural complexity and the wide functional group diversity found in these natural substances. The lack of selective synthetic methods available to directly manipulate unprotected complex small molecules, in particular to perform structure-activity relationship studies and prepare appropriate cellular probes, has recently begun to be addressed, benefitting from the broader emerging area of chemoselective synthetic methodology. Thus, new reagents, catalysts and reaction processes are enabling both chemo- and site-selective modifications of complex, native natural products. In this review, we describe selected recent examples of these functionalization strategies in this emerging area.
生物活性天然产物及其衍生物仍然是发现疾病干预新细胞靶点和开发新型治疗药物先导化合物的持久起点。前一目标是通过从天然产物合成生物活性细胞探针来实现,通过经典亲和层析或最近的蛋白质组分析方法深入了解这些天然产物的作用机制。然而,由于这些天然物质结构复杂且功能基团多样性广泛,直接对天然产物进行直接和选择性修饰仍然是一个挑战。缺乏直接操纵未保护复杂小分子的选择性合成方法,特别是进行构效关系研究和制备适当的细胞探针,最近已开始得到解决,这得益于化学选择性合成方法这一新兴领域的广泛发展。因此,新的试剂、催化剂和反应工艺能够实现复杂天然产物的化学和位点选择性修饰。在这篇综述中,我们描述了该新兴领域中这些功能化策略的一些最新实例。