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Discovery of a Potent Dual Inhibitor of Wild-Type and Mutant Respiratory Syncytial Virus Fusion Proteins.


ABSTRACT: A novel series of macrocyclic pyrazolo[1,5-a]pyrimidine derivatives as respiratory syncytial virus (RSV) fusion glycoprotein (F protein) inhibitors were designed and synthesized based on docking studies of acyclic inhibitors. This effort resulted in the discovery of several macrocyclic compounds, such as 12b, 12f, and 12h, with low nanomolar to subnanomolar activities against the wild-type RSV F protein A2. In addition, 12h showed a single-digit nanomolar potency against the previously reported drug-resistant mutant D486N. Molecular modeling and computational analyses suggested that 12h binds to the D486N mutant while maintaining a rigid bioactive conformation via macrocyclization and that it interacts with a hydrophobic cavity of the mutant using a new interaction surface of 12h. This report describes the rational design of macrocyclic compounds with dual inhibitory activities against wild-type and mutant RSV F proteins.

SUBMITTER: Yamaguchi-Sasaki T 

PROVIDER: S-EPMC7294717 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Discovery of a Potent Dual Inhibitor of Wild-Type and Mutant Respiratory Syncytial Virus Fusion Proteins.

Yamaguchi-Sasaki Toru T   Tokura Seiken S   Ogata Yuya Y   Kawaguchi Takanori T   Sugaya Yutaka Y   Takahashi Ryo R   Iwakiri Kanako K   Abe-Kumasaka Tomoko T   Yoshida Ippei I   Arikawa Kaho K   Sugiyama Hiroyuki H   Kanuma Kosuke K  

ACS medicinal chemistry letters 20200410 6


A novel series of macrocyclic pyrazolo[1,5-<i>a</i>]pyrimidine derivatives as respiratory syncytial virus (RSV) fusion glycoprotein (F protein) inhibitors were designed and synthesized based on docking studies of acyclic inhibitors. This effort resulted in the discovery of several macrocyclic compounds, such as <b>12b</b>, <b>12f</b>, and <b>12h</b>, with low nanomolar to subnanomolar activities against the wild-type RSV F protein A2. In addition, <b>12h</b> showed a single-digit nanomolar poten  ...[more]

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