Design and Synthesis of Labystegines, Hybrid Iminosugars from LAB and Calystegine, as Inhibitors of Intestinal α-Glucosidases: Binding Conformation and Interaction for ntSI

Atsushi Kato*, Zhao Lan Zhang, Hong Yao Wang, Yue Mei Jia, Chu Yi Yu, Kyoko Kinami, Yuki Hirokami, Yutaro Tsuji, Isao Adachi, Robert J. Nash, George W.J. Fleet, Jun Koseki, Izumi Nakagome, Shuichi Hirono

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

38 Scopus citations

Abstract

This paper identifies the required configuration and orientation of α-glucosidase inhibitors, miglitol, α-1-C-butyl-DNJ, and α-1-C-butyl-LAB for binding to ntSI (isomaltase). Molecular dynamics (MD) calculations suggested that the flexibility around the keyhole of ntSI is lower than that of ctSI (sucrase). Furthermore, a molecular-docking study revealed that a specific binding orientation with a CH-π interaction (Trp370 and Phe648) is a requirement for achieving a strong affinity with ntSI. On the basis of these results, a new class of nortropane-type iminosugars, labystegines, hybrid iminosugars of LAB and calystegine, have been designed and synthesized efficiently from sugar-derived cyclic nitrones with intramolecular 1,3-dipolar cycloaddition or samarium iodide catalyzed reductive coupling reaction as the key step. Biological evaluation showed that our newly designed 3(S)-hydroxy labystegine (6a) inherited the selectivity against intestinal α-glucosidases from LAB, and its inhibition potency was 10 times better than that of miglitol. Labystegine, therefore, represents a promising new class of nortropane-type iminosugar for improving postprandial hyperglycemia. (Figure Presented).

Original languageEnglish
Pages (from-to)4501-4515
Number of pages15
JournalJournal of Organic Chemistry
Volume80
Issue number9
DOIs
StatePublished - 2015/05/01

ASJC Scopus subject areas

  • Organic Chemistry

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