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  4. Anguinomycins and Derivatives: Total Syntheses, Modeling, and Biological Evaluation of the Inhibition of Nucleocytoplasmic Transport
 
research article

Anguinomycins and Derivatives: Total Syntheses, Modeling, and Biological Evaluation of the Inhibition of Nucleocytoplasmic Transport

Bonazzi, Simone
•
Eidam, Oliv
•
Güttinger, Stephan
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2010
Journal of the American Chemical Society

The preparation of the polyketide natural products anguinomycin C and D is reported based on key steps such as Negishi stereoinversion cross coupling, Jacobsen Cr(III)-catalyzed Hetero Diels−Alder reaction, Evans B-mediated syn-aldol chemistry, and B-alkyl Suzuki−Miyaura cross coupling. The configuration of both natural products was established as (5R,10R,16R,18S,19R,20S). Biological evaluation demonstrated that these natural products are inhibitors of the nuclear export receptor CRM1, leading to shutdown of CRM1-mediated nuclear protein export at concentrations above 10 nM. Analogues of anguinomycin and leptomycin B (LMB) have been prepared, and the simple α,β-unsaturated lactone analogue 4 with a truncated polyketide chain retains most of the biological activity (inhibition above 25 nM). The structural basis for this inhibition has been demonstrated by modeling the transport inhibitors into X-ray crystal structures, thus highlighting key points for successful and strong biological action of anguinomycin and LMB.

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Type
research article
DOI
10.1021/ja9097093
Web of Science ID

WOS:000275084800061

Author(s)
Bonazzi, Simone
Eidam, Oliv
Güttinger, Stephan
Wach, Jean-Yves
Zemp, Ivo
Kutay, Ulrike
Gademann, Karl  
Date Issued

2010

Published in
Journal of the American Chemical Society
Volume

132

Issue

4

Start page

1432

End page

1442

Subjects

Potent Cytotoxic Polyketide

•

Asymmetric Total-Synthesis

•

Anti-Fungal Antibiotics

•

Nuclear-Export Signals

•

Leptomycin-B

•

Callystatin-A

•

Natural-Products

•

Callyspongia-Truncata

•

Antitumor Antibiotics

•

Spongean Polyketide

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSYNC  
Available on Infoscience
January 9, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/45404
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