Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.
Nature. 2012 Dec 6;492(7427):95-9. doi: 10.1038/nature11680. Epub 2012 Nov 28.
Nitrogen-rich heterocyclic compounds have had a profound effect on human health because these chemical motifs are found in a large number of drugs used to combat a broad range of diseases and pathophysiological conditions. Advances in transition-metal-mediated cross-coupling have simplified the synthesis of such molecules; however, C-H functionalization of medicinally important heterocycles that does not rely on pre-functionalized starting materials is an underdeveloped area. Unfortunately, the innate properties of heterocycles that make them so desirable for biological applications--such as aqueous solubility and their ability to act as ligands--render them challenging substrates for direct chemical functionalization. Here we report that zinc sulphinate salts can be used to transfer alkyl radicals to heterocycles, allowing for the mild (moderate temperature, 50 °C or less), direct and operationally simple formation of medicinally relevant C-C bonds while reacting in a complementary fashion to other innate C-H functionalization methods (Minisci, borono-Minisci, electrophilic aromatic substitution, transition-metal-mediated C-H insertion and C-H deprotonation). We prepared a toolkit of these reagents and studied their reactivity across a wide range of heterocycles (natural products, drugs and building blocks) without recourse to protecting-group chemistry. The reagents can even be used in tandem fashion in a single pot in the presence of water and air.
富含氮的杂环化合物对人类健康有深远的影响,因为这些化学结构在大量用于治疗各种疾病和病理生理状况的药物中都有发现。过渡金属介导的交叉偶联技术的进步简化了这些分子的合成;然而,不依赖于预官能化起始原料的药用重要杂环的 C-H 功能化是一个尚未开发的领域。不幸的是,杂环的固有性质使它们成为生物应用的理想选择,例如水溶性和作为配体的能力,但这也使得它们成为直接化学官能化的具有挑战性的底物。在这里,我们报告了亚硫酸锌盐可用于向杂环转移烷基自由基,从而能够温和(中等温度,50°C 或更低)、直接且操作简单地形成与药物相关的 C-C 键,同时以互补的方式与其他固有 C-H 功能化方法(Minisci、硼-Minisc 反应、亲电芳香取代、过渡金属介导的 C-H 插入和 C-H 去质子化)反应。我们制备了这些试剂的工具包,并在不依赖保护基化学的情况下,在广泛的杂环(天然产物、药物和构建模块)中研究了它们的反应性。这些试剂甚至可以在水和空气中存在的情况下以串联方式在单个锅中使用。