Michalak Sharon E, Vanderwal Christopher D
Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, CA 92697, USA.
Department of Pharmaceutical Sciences, 856 Health Sciences Road, Suite 5400, University of California, Irvine, CA 92697, USA.
Synthesis (Stuttg). 2025 Sep 4. doi: 10.1055/a-2695-8576.
Steviol is one of myriad polycyclic terpenoids bearing oxygenation on the axially disposed C19 carbon. The presence of this C19 alcohol renders the C4 quaternary carbon stereogenic, issuing a challenge for stereoselective synthesis. Here we show that a suitably disposed chlorine atom at C2, coupled with the correct diastereomer of terminal epoxide that initiates cationic bicyclization, leads to the desired stereochemical outcome. Subsequently, the anisole terminating group undergoes Birch reduction that simultaneously reduces the C-Cl bond, removing the transient "auxiliary" and completing a short, highly stereoselective formal synthesis of steviol. This work provides another example of the power of removable C-X bonds for stereocontrolled synthesis.
甜菊醇是众多在轴向排列的C19碳上带有氧合的多环萜类化合物之一。这种C19醇的存在使C4季碳具有立体异构性,这对立体选择性合成提出了挑战。在这里我们表明,在C2处适当位置的氯原子,与引发阳离子双环化的末端环氧化物的正确非对映异构体相结合,会产生所需的立体化学结果。随后,苯甲醚端基进行Birch还原,同时还原C-Cl键,去除瞬态“助剂”,完成了甜菊醇的简短、高度立体选择性的形式合成。这项工作提供了另一个可去除的C-X键用于立体控制合成的能力的例子。