Cargando…

Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues

Cross-metathesis (CM) and Keck asymmetric allylation, which allows access to defined stereochemistry of a remote side chain hydroxyl group, are the key steps in a versatile synthesis of broussonetine M (3) from the d-arabinose-derived cyclic nitrone 14. By a similar strategy, ent-broussonetine M (en...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Qing-Kun, Kinami, Kyoko, Kato, Atsushi, Li, Yi-Xian, Jia, Yue-Mei, Fleet, George W. J., Yu, Chu-Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6832352/
https://www.ncbi.nlm.nih.gov/pubmed/31619020
http://dx.doi.org/10.3390/molecules24203712
_version_ 1783466151828783104
author Wu, Qing-Kun
Kinami, Kyoko
Kato, Atsushi
Li, Yi-Xian
Jia, Yue-Mei
Fleet, George W. J.
Yu, Chu-Yi
author_facet Wu, Qing-Kun
Kinami, Kyoko
Kato, Atsushi
Li, Yi-Xian
Jia, Yue-Mei
Fleet, George W. J.
Yu, Chu-Yi
author_sort Wu, Qing-Kun
collection PubMed
description Cross-metathesis (CM) and Keck asymmetric allylation, which allows access to defined stereochemistry of a remote side chain hydroxyl group, are the key steps in a versatile synthesis of broussonetine M (3) from the d-arabinose-derived cyclic nitrone 14. By a similar strategy, ent-broussonetine M (ent-3) and six other stereoisomers have been synthesized, respectively, starting from l-arabino-nitrone (ent-14), l-lyxo-nitrone (ent-3-epi-14), and l-xylo-nitrone (2-epi-14) in five steps, in 26%–31% overall yield. The natural product broussonetine M (3) and 10’-epi-3 were potent inhibitors of β-glucosidase (IC(50) = 6.3 μM and 0.8 μM, respectively) and β-galactosidase (IC(50) = 2.3 μM and 0.2 μM, respectively); while their enantiomers, ent-3 and ent-10’-epi-3, were selective and potent inhibitors of rice α-glucosidase (IC(50) = 1.2 μM and 1.3 μM, respectively) and rat intestinal maltase (IC(50) = 0.29 μM and 18 μM, respectively). Both the configuration of the polyhydroxylated pyrrolidine ring and C-10’ hydroxyl on the alkyl side chain affect the specificity and potency of glycosidase inhibition.
format Online
Article
Text
id pubmed-6832352
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68323522019-11-21 Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues Wu, Qing-Kun Kinami, Kyoko Kato, Atsushi Li, Yi-Xian Jia, Yue-Mei Fleet, George W. J. Yu, Chu-Yi Molecules Article Cross-metathesis (CM) and Keck asymmetric allylation, which allows access to defined stereochemistry of a remote side chain hydroxyl group, are the key steps in a versatile synthesis of broussonetine M (3) from the d-arabinose-derived cyclic nitrone 14. By a similar strategy, ent-broussonetine M (ent-3) and six other stereoisomers have been synthesized, respectively, starting from l-arabino-nitrone (ent-14), l-lyxo-nitrone (ent-3-epi-14), and l-xylo-nitrone (2-epi-14) in five steps, in 26%–31% overall yield. The natural product broussonetine M (3) and 10’-epi-3 were potent inhibitors of β-glucosidase (IC(50) = 6.3 μM and 0.8 μM, respectively) and β-galactosidase (IC(50) = 2.3 μM and 0.2 μM, respectively); while their enantiomers, ent-3 and ent-10’-epi-3, were selective and potent inhibitors of rice α-glucosidase (IC(50) = 1.2 μM and 1.3 μM, respectively) and rat intestinal maltase (IC(50) = 0.29 μM and 18 μM, respectively). Both the configuration of the polyhydroxylated pyrrolidine ring and C-10’ hydroxyl on the alkyl side chain affect the specificity and potency of glycosidase inhibition. MDPI 2019-10-15 /pmc/articles/PMC6832352/ /pubmed/31619020 http://dx.doi.org/10.3390/molecules24203712 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wu, Qing-Kun
Kinami, Kyoko
Kato, Atsushi
Li, Yi-Xian
Jia, Yue-Mei
Fleet, George W. J.
Yu, Chu-Yi
Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title_full Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title_fullStr Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title_full_unstemmed Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title_short Synthesis and Glycosidase Inhibition of Broussonetine M and Its Analogues
title_sort synthesis and glycosidase inhibition of broussonetine m and its analogues
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6832352/
https://www.ncbi.nlm.nih.gov/pubmed/31619020
http://dx.doi.org/10.3390/molecules24203712
work_keys_str_mv AT wuqingkun synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT kinamikyoko synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT katoatsushi synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT liyixian synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT jiayuemei synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT fleetgeorgewj synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues
AT yuchuyi synthesisandglycosidaseinhibitionofbroussonetinemanditsanalogues