
Journal of Medicinal Chemistry p. 4984 - 4997 (2015)
Update date:2022-08-16
Topics:
Sugawara, Akihiro
Maita, Nobuo
Gouda, Hiroaki
Yamamoto, Tsuyoshi
Hirose, Tomoyasu
Kimura, Saori
Saito, Yoshifumi
Nakano, Hayato
Kasai, Takako
Nakano, Hirofumi
Shiomi, Kazuro
Hirono, Shuichi
Watanabe, Takeshi
Taniguchi, Hisaaki
Omura, Satoshi
Sunazuka, Toshiaki
Argifin, a 17-membered pentapeptide, inhibits chitinase. As argifin has properties that render it unsuitable as a drug development candidate, we devised a mechanism to create the structural component of argifin that bestows the chitinase inhibition and introduce it into a 14-membered macrolide scaffold. Here we describe (1) the designed macrolide, which exhibits ~200-fold more potent chitinase inhibition than argifin, (2) the binding modes of the macrolide with Serratia marcescens chitinase B, and (3) the computed analysis explaining the reason for derivatives displaying increased inhibition compared to argifin, the macrolide aglycone displaying inhibition in a nanomolar range. This promises a class of chitinase inhibitors with novel skeletons, providing innovative insight for drug design and the use of macrolides as adaptable, flexible templates for use in drug discovery research and development.
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