Abstract
The HTS-based discovery and structure-guided optimization of a novel series of GKRP-selective GK-GKRP disrupters are revealed. Diarylmethanesulfonamide hit 6 (hGK-hGKRP IC50 = 1.2 μM) was optimized to lead compound 32 (AMG-0696; hGK-hGKRP IC50 = 0.0038 μM). A stabilizing interaction between a nitrogen atom lone pair and an aromatic sulfur system (nN → σ*S-X) in 32 was exploited to conformationally constrain a biaryl linkage and allow contact with key residues in GKRP. Lead compound 32 was shown to induce GK translocation from the nucleus to the cytoplasm in rats (IHC score = 0; 10 mg/kg po, 6 h) and blood glucose reduction in mice (POC = -45%; 100 mg/kg po, 3 h). X-ray analyses of 32 and several precursors bound to GKRP were also obtained. This novel disrupter of GK-GKRP binding enables further exploration of GKRP as a potential therapeutic target for type II diabetes and highlights the value of exploiting unconventional nonbonded interactions in drug design.
Publication types
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Research Support, U.S. Gov't, Non-P.H.S.
MeSH terms
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Active Transport, Cell Nucleus
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Adaptor Proteins, Signal Transducing / metabolism*
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Animals
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Blood Glucose / metabolism
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Cell Nucleus / metabolism
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Crystallography, X-Ray
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Cytoplasm / metabolism
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Glucokinase / metabolism*
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Hypoglycemic Agents / chemistry*
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Hypoglycemic Agents / pharmacokinetics
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Hypoglycemic Agents / pharmacology
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Male
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Mice
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Microsomes, Liver / metabolism
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Models, Molecular
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Molecular Conformation
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Protein Binding
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Rats, Sprague-Dawley
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Stereoisomerism
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Structure-Activity Relationship
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Sulfonamides / chemistry*
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Sulfonamides / pharmacokinetics
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Sulfonamides / pharmacology
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Thiophenes / chemistry*
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Thiophenes / pharmacokinetics
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Thiophenes / pharmacology
Substances
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Adaptor Proteins, Signal Transducing
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Blood Glucose
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GCKR protein, human
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Hypoglycemic Agents
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N-((2-amino-5-chloro-3-fluoro-4-pyridinyl)(7-(4-(1-hydroxy-1-methylethyl)-2-pyridinyl)-1-benzothiophen-2-yl)methyl)cyclopropanesulfonamide
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Sulfonamides
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Thiophenes
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Glucokinase