| Literature DB >> 36199353 |
Janardana Reddi Desireddi1,2, Mora Mallikarjuna Rao3, Kiran Kumar Murahari1, Rajashekar Reddy Nimmareddy1, Thirupathi Mothe2, Arun Kumar Lingala2, Bhimcharan Maiti1, Ravinder Manchal2.
Abstract
Efficient and facile synthesis of Japanese orange fly lactone (1) was achieved from a commercially available d-glucose by investigating the Barton-McCombie reaction with furanose anomeric isomers (12α , β) with an overall yield of 12.6%. During the course of this synthesis, the β-oxygen effect was discovered in the deoxygenation step at the C-3 position using the Barton-McCombie reaction, where the substrate allows the effect to operate in one of the isomers but not in the other. Under the same reaction conditions, xanthate derived from the β-furanose isomer affords a high yield of deoxygenated product, whereas the α-isomer produces a very low yield. The key transformations used were Wittig olefination, TEMPO mediated oxidation, and Barton-McCombie deoxygenation, resulting in a concise total synthesis of Japanese orange fly lactone (1). Our success will allow for further biological studies of this natural product, as well as opportunities for developing new potentially promising pheromones. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 36199353 PMCID: PMC9449999 DOI: 10.1039/d2ra04531a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Structure of Japanese orange fly lactone.
Scheme 1Retrosynthetic strategy of Japanese orange fly lactone (1).
Scheme 2Synthesis of Anomeric isomers 12α and 12β.
Scheme 3Synthesis of Lactol from 12β & 12α isomers.
Scheme 4Synthesis of Japanese orange fly lactone (1).