Chemistry Department, Taras Shevchenko National University of Kyiv, Lva Tolstoho Street 12, Kiev, 01033, Ukraine.
Enamine Ltd., Chervonotkatska Street 78, Kiev, 02660, Ukraine.
Mol Divers. 2018 Nov;22(4):919-927. doi: 10.1007/s11030-018-9848-x. Epub 2018 Jun 28.
The reactivity of the 4-amino-2,3-dihydro-1H-1λ-isothiazole-1,1-dioxide (β-amino-γ-sultam) framework has not been studied sufficiently. Here we describe the chemical properties of this heterocyclic system toward electrophiles on spiranic and non-spiranic substrates. A variety of C-electrophiles (acetic anhydride, benzoyl chloride, DMFDMA, 4,4-dimethoxybutan-2-one) and heteroatom electrophiles (bromine, nitrosyl acetate) have been explored. Both the C-5 and 4-amino positions of the β-amino-γ-sultam system are able to undergo electrophilic reactions. Heteroatom electrophiles attack the C-5 position, whereas carbo-electrophiles affect the amino group. β-Amino-γ-sultams also were used as starting compounds for the synthesis of 6- or 7-substituted 1λ-isothiazolo[4,5-b]pyridine-1,1-dioxides through condensation reaction and palladium-catalyzed oxidative coupling.
4-氨基-2,3-二氢-1H-1λ-异噻唑-1,1-二氧化物(β-氨基-γ-内酰胺)结构的反应性尚未得到充分研究。在这里,我们描述了该杂环系统对螺环和非螺环底物上亲电试剂的化学性质。已经探索了各种 C-亲电试剂(乙酸酐、苯甲酰氯、DMFDMA、4,4-二甲氧基丁-2-酮)和杂原子亲电试剂(溴、醋酸硝酰)。β-氨基-γ-内酰胺系统的 C-5 位和 4-氨基位都能够发生亲电反应。杂原子亲电试剂攻击 C-5 位,而碳亲电试剂影响氨基。β-氨基-γ-内酰胺还可以用作起始化合物,通过缩合反应和钯催化氧化偶联合成 6-或 7-取代的 1λ-异噻唑并[4,5-b]吡啶-1,1-二氧化物。