Gupta Manish K, Jena Chinmay K, Sharma Nagendra K
School of Chemical Sciences, National Institute of Science Education and Research (NISER)-Bhubaneswar, Jatni campus, Bhubaneswar-752050, Odisha, India.
HBNI-Mumbai, Mumbai, India.
Org Biomol Chem. 2021 Dec 1;19(46):10097-10104. doi: 10.1039/d1ob01997j.
Isoindolinone is a constituent of various natural products and synthetic biologically active compounds. The classical multi-step synthetic methods used to prepare various indolinone derivatives are tedious and challenging. One-pot synthetic methods are attractive and economical. Transition-metal-catalyzed C-H activation is an emerging tool for synthesizing natural products and small organic molecules reducing the number of synthetic steps necessary. This paper describes the synthesis of -alkyl-3-methenyl chiral isoindolinone derivatives from aryl amides of L-amino acids and non-activated alkene Pd-catalyzed C(sp)-H olefination. Herein, the amino acid residue acts as a directing group for olefination at the aryl ring, and then cyclization occurs at the amide NH. Hence, this methodology could be helpful to transform standard amino acids into respective chiral isoindolinone derivatives.
异吲哚啉酮是多种天然产物和合成生物活性化合物的组成成分。用于制备各种吲哚啉酮衍生物的经典多步合成方法繁琐且具有挑战性。一锅法合成方法具有吸引力且经济。过渡金属催化的C-H活化是合成天然产物和有机小分子的一种新兴工具,可减少所需的合成步骤数量。本文描述了通过L-氨基酸的芳基酰胺与未活化烯烃的钯催化C(sp)-H烯基化反应合成α-烷基-3-亚甲基手性异吲哚啉酮衍生物。在此,氨基酸残基作为芳环烯基化的导向基团,然后在酰胺NH处发生环化。因此,该方法有助于将标准氨基酸转化为各自的手性异吲哚啉酮衍生物。