化学
果糖
药效团
脂肪肝
生物化学
立体化学
内科学
疾病
医学
作者
Kentaro Futatsugi,Aaron Smith,Meihua Tu,Brian Raymer,Kay Ahn,Steven B. Coffey,Matthew Dowling,Dilinie P. Fernando,Jemy A. Gutierrez,Kim Huard,J. Jasti,Amit S. Kalgutkar,John D. Knafels,Jayvardhan Pandit,Kevin Parris,Sylvie Perez,Jeffrey A. Pfefferkorn,David A. Price,Tim F. Ryder,Andre Shavnya
标识
DOI:10.1021/acs.jmedchem.0c00944
摘要
Increased fructose consumption and its subsequent metabolism have been implicated in metabolic disorders such as nonalcoholic fatty liver disease and steatohepatitis (NAFLD/NASH) and insulin resistance. Ketohexokinase (KHK) converts fructose to fructose-1-phosphate (F1P) in the first step of the metabolic cascade. Herein we report the discovery of a first-in-class KHK inhibitor, PF-06835919 (8), currently in phase 2 clinical trials. The discovery of 8 was built upon our originally reported, fragment-derived lead 1 and the recognition of an alternative, rotated binding mode upon changing the ribose-pocket binding moiety from a pyrrolidinyl to an azetidinyl ring system. This new binding mode enabled efficient exploration of the vector directed at the Arg-108 residue, leading to the identification of highly potent 3-azabicyclo[3.1.0]hexane acetic acid-based KHK inhibitors by combined use of parallel medicinal chemistry and structure-based drug design.
科研通智能强力驱动
Strongly Powered by AbleSci AI