TY - JOUR
T1 - Design and Synthesis of Labystegines, Hybrid Iminosugars from LAB and Calystegine, as Inhibitors of Intestinal α-Glucosidases
T2 - Binding Conformation and Interaction for ntSI
AU - Kato, Atsushi
AU - Zhang, Zhao Lan
AU - Wang, Hong Yao
AU - Jia, Yue Mei
AU - Yu, Chu Yi
AU - Kinami, Kyoko
AU - Hirokami, Yuki
AU - Tsuji, Yutaro
AU - Adachi, Isao
AU - Nash, Robert J.
AU - Fleet, George W.J.
AU - Koseki, Jun
AU - Nakagome, Izumi
AU - Hirono, Shuichi
N1 - Publisher Copyright:
© 2015 American Chemical Society.
PY - 2015/5/1
Y1 - 2015/5/1
N2 - 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).
AB - 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).
UR - http://www.scopus.com/inward/record.url?scp=84928905638&partnerID=8YFLogxK
U2 - 10.1021/acs.joc.5b00342
DO - 10.1021/acs.joc.5b00342
M3 - 学術論文
C2 - 25843107
AN - SCOPUS:84928905638
SN - 0022-3263
VL - 80
SP - 4501
EP - 4515
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 9
ER -