Issue 30, 2021

Total synthesis of (+)-spiroindimicin A and congeners unveils their antiparasitic activity

Abstract

The spiroindimicins are a unique class of chlorinated indole alkaloids characterized by three heteroaromatic rings structured around a congested spirocyclic stereocenter. Here, we report the first total synthesis of (+)-spiroindimicin A, which bears a challenging C-3′/C-5′′-linked spiroindolenine. We detail our initial efforts to effect a biomimetic oxidative spirocyclization from its proposed natural precursor, lynamicin D, and describe how these studies shaped our final abiotic 9-step solution to this complex alkaloid built around a key Pd-catalyzed asymmetric spirocyclization. Scalable access to spiroindimicins A, H, and their congeners has enabled discovery of their activity against several parasites relevant to human health, providing potential starting points for new therapeutics for the neglected tropical diseases leishmaniasis and African sleeping sickness.

Graphical abstract: Total synthesis of (+)-spiroindimicin A and congeners unveils their antiparasitic activity

Supplementary files

Article information

Article type
Edge Article
Submitted
26 May 2021
Accepted
25 Jun 2021
First published
30 Jun 2021
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2021,12, 10388-10394

Total synthesis of (+)-spiroindimicin A and congeners unveils their antiparasitic activity

Z. Zhang, S. Ray, L. Imlay, L. T. Callaghan, H. Niederstrasser, P. L. Mallipeddi, B. A. Posner, D. M. Wetzel, M. A. Phillips and M. W. Smith, Chem. Sci., 2021, 12, 10388 DOI: 10.1039/D1SC02838C

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