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Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity

[Image: see text] Apratoxins are cytotoxic natural products originally isolated from marine cyanobacteria that act by preventing cotranslational translocation early in the secretory pathway to downregulate receptor levels and inhibit growth factor secretion, leading to potent antiproliferative activ...

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Detalles Bibliográficos
Autores principales: Chen, Qi-Yin, Liu, Yanxia, Cai, Weijing, Luesch, Hendrik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3993931/
https://www.ncbi.nlm.nih.gov/pubmed/24660812
http://dx.doi.org/10.1021/jm4019965
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author Chen, Qi-Yin
Liu, Yanxia
Cai, Weijing
Luesch, Hendrik
author_facet Chen, Qi-Yin
Liu, Yanxia
Cai, Weijing
Luesch, Hendrik
author_sort Chen, Qi-Yin
collection PubMed
description [Image: see text] Apratoxins are cytotoxic natural products originally isolated from marine cyanobacteria that act by preventing cotranslational translocation early in the secretory pathway to downregulate receptor levels and inhibit growth factor secretion, leading to potent antiproliferative activity. Through rational design and total synthesis of an apratoxin A/E hybrid, apratoxin S4 (1a), we have previously improved the antitumor activity and tolerability in vivo. Compound 1a and newly designed analogues apratoxins S7–S9 (1b–d), with various degrees of methylation at C34 (1b,c) or epimeric configuration at C30 (1d), were efficiently synthesized utilizing improved procedures. Optimizations have been applied to the synthesis of key intermediate aldehyde 7 and further include the application of Leighton’s silanes and modifications of Kelly’s methods to induce thiazoline ring formation in other crucial steps of the apratoxin synthesis. Apratoxin S9 (1d) exhibited increased activity with subnanomolar potency. Apratoxin S8 (1c) lacks the propensity to be deactivated by dehydration and showed efficacy in a human HCT116 xenograft mouse model.
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spelling pubmed-39939312015-03-24 Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity Chen, Qi-Yin Liu, Yanxia Cai, Weijing Luesch, Hendrik J Med Chem [Image: see text] Apratoxins are cytotoxic natural products originally isolated from marine cyanobacteria that act by preventing cotranslational translocation early in the secretory pathway to downregulate receptor levels and inhibit growth factor secretion, leading to potent antiproliferative activity. Through rational design and total synthesis of an apratoxin A/E hybrid, apratoxin S4 (1a), we have previously improved the antitumor activity and tolerability in vivo. Compound 1a and newly designed analogues apratoxins S7–S9 (1b–d), with various degrees of methylation at C34 (1b,c) or epimeric configuration at C30 (1d), were efficiently synthesized utilizing improved procedures. Optimizations have been applied to the synthesis of key intermediate aldehyde 7 and further include the application of Leighton’s silanes and modifications of Kelly’s methods to induce thiazoline ring formation in other crucial steps of the apratoxin synthesis. Apratoxin S9 (1d) exhibited increased activity with subnanomolar potency. Apratoxin S8 (1c) lacks the propensity to be deactivated by dehydration and showed efficacy in a human HCT116 xenograft mouse model. American Chemical Society 2014-03-24 2014-04-10 /pmc/articles/PMC3993931/ /pubmed/24660812 http://dx.doi.org/10.1021/jm4019965 Text en Copyright © 2014 American Chemical Society
spellingShingle Chen, Qi-Yin
Liu, Yanxia
Cai, Weijing
Luesch, Hendrik
Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title_full Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title_fullStr Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title_full_unstemmed Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title_short Improved Total Synthesis and Biological Evaluation of Potent Apratoxin S4 Based Anticancer Agents with Differential Stability and Further Enhanced Activity
title_sort improved total synthesis and biological evaluation of potent apratoxin s4 based anticancer agents with differential stability and further enhanced activity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3993931/
https://www.ncbi.nlm.nih.gov/pubmed/24660812
http://dx.doi.org/10.1021/jm4019965
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