Greenwood Nathaniel S, Cerny Nicholas P, Deziel Anthony P, Ellman Jonathan A
Department of Chemistry, Yale University, 225 Prospect St., New Haven, CT 06520, USA.
Angew Chem Int Ed Engl. 2024 Jan 15;63(3):e202315701. doi: 10.1002/anie.202315701. Epub 2023 Dec 12.
A general one-pot approach to diverse N-acylsulfenamides from a common S-phenethylsulfenamide starting material is reported. This approach was demonstrated by C-S bond formation utilizing commercially abundant (hetero)aryl iodides and boronic acids to provide sulfilimine intermediates that undergo thermal elimination of styrene. In contrast, all prior approaches to N-acylsulfenamides rely on thiol inputs to introduce sulfenamide S-substituents. A broad scope of reaction inputs was demonstrated including for approved drugs and drug precursors with dense display of functionality. Several different types of sulfur functionalization were performed on a sulfenamide derived from a complex precursor of the blockbuster anticoagulant drug apixaban, highlighting the utility of this approach for the introduction of high oxidation state sulfur groups in complex bioactive compounds. Mechanistic studies established that the key styrene elimination step proceeds by a concerted elimination that does not require reagents or catalysts, and therefore, this one-pot approach should be applicable to the synthesis of N-acylsulfenamides utilizing diverse electrophiles and reaction conditions for C-S bond formation.
报道了一种从常见的S-苯乙基亚磺酰胺起始原料制备多种N-酰基亚磺酰胺的通用一锅法。该方法通过利用市售丰富的(杂)芳基碘化物和硼酸形成C-S键来证明,以提供经历苯乙烯热消除的亚磺酰亚胺中间体。相比之下,之前所有制备N-酰基亚磺酰胺的方法都依赖于硫醇输入来引入亚磺酰胺的S-取代基。展示了广泛的反应输入范围,包括具有密集官能团展示的已批准药物和药物前体。对源自重磅抗凝血药物阿哌沙班复杂前体的亚磺酰胺进行了几种不同类型的硫官能化,突出了该方法在复杂生物活性化合物中引入高氧化态硫基团的实用性。机理研究表明,关键的苯乙烯消除步骤通过协同消除进行,不需要试剂或催化剂,因此,这种一锅法应该适用于利用多种亲电试剂和C-S键形成反应条件来合成N-酰基亚磺酰胺。