Department of Chemistry, Columbia University , New York, New York 10027, United States.
J Am Chem Soc. 2017 Mar 29;139(12):4568-4573. doi: 10.1021/jacs.7b01590. Epub 2017 Mar 15.
Because of both their synthetically challenging and stereochemically complex structures and their wide range of often clinically relevant biological activities, nonaromatic polyketide natural products have for decades attracted an enormous amount of attention from synthetic chemists and played an important role in the development of modern asymmetric synthesis. Often, such compounds are not available in quantity from natural sources, rendering analogue synthesis and drug development efforts extremely resource-intensive and time-consuming. In this arena, the quest for ever more step-economical and efficient methods and strategies, useful and important goals in their own right, takes on added importance, and the most useful syntheses will combine high levels of step-economy with efficiency and scalability. The nonaromatic polyketide natural product zincophorin methyl ester has attracted significant attention from synthetic chemists due primarily to the historically synthetically challenging C(8)-C(12) all-anti stereopentad. While great progress has been made in the development of new methodologies to more directly address this problem and as a result in the development of more highly step-economical syntheses, a synthesis that combines high levels of step economy with high levels of efficiency and scalability has remained elusive. To address this problem, we have devised a new synthesis of zincophorin methyl ester that proceeds in just nine steps in the longest linear sequence and proceeds in 10% overall yield. Additionally, the scalability and practicability of the route have been demonstrated by performing all of the steps on a meaningful scale. This synthesis thus represents by a significant margin the most step-economical, efficient, and practicable synthesis of this stereochemically complex natural product reported to date, and is well suited to facilitate the synthesis of analogues and medicinal chemistry development efforts in a time- and resource-efficient manner.
由于其合成具有挑战性和立体化学复杂的结构,以及广泛的临床相关生物活性,非芳香族聚酮天然产物几十年来一直吸引着合成化学家的大量关注,并在现代不对称合成的发展中发挥了重要作用。通常情况下,这些化合物无法从天然来源大量获得,这使得类似物合成和药物开发工作极其耗费资源和时间。在这个领域,追求更加经济高效的方法和策略是非常重要的,这些目标本身就非常有用和重要,最有用的合成将结合高水平的经济性、效率和可扩展性。非芳香族聚酮天然产物锌载体甲酯由于其历史上具有挑战性的 C(8)-C(12)全反式立体五重体,引起了合成化学家的极大关注。虽然在开发新的方法学以更直接地解决这个问题以及因此开发更具经济性的合成方面取得了很大进展,但结合高水平的经济性、高效率和可扩展性的合成仍然难以实现。为了解决这个问题,我们设计了一种新的锌载体甲酯合成方法,最长线性序列只有九步,总收率为 10%。此外,通过在有意义的规模上进行所有步骤,证明了该路线的可扩展性和实用性。因此,该合成方法在迄今为止报道的这种立体化学复杂的天然产物的合成中,具有显著的经济性、高效率和实用性,非常适合以节省时间和资源的方式促进类似物的合成和药物化学开发工作。