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4-Quinolone-3-carboxylic acids as cell-permeable inhibitors of protein tyrosine phosphatase 1B
- Source :
- Bioorganicmedicinal chemistry. 22(14)
- Publication Year :
- 2014
-
Abstract
- Protein tyrosine phosphatase 1B is a negative regulator in the insulin and leptin signaling pathways, and has emerged as an attractive target for the treatment of type 2 diabetes and obesity. However, the essential pharmacophore of charged phosphotyrosine or its mimetic confer low selectivity and poor cell permeability. Starting from our previously reported aryl diketoacid-based PTP1B inhibitors, a drug-like scaffold of 4-quinolone-3-carboxylic acid was introduced for the first time as a novel surrogate of phosphotyrosine. An optimal combination of hydrophobic groups installed at C-6, N-1 and C-3 positions of the quinolone motif afforded potent PTP1B inhibitors with low micromolar IC50 values. These 4-quinolone-3-carboxylate based PTP1B inhibitors displayed a 2–10 fold selectivity over a panel of PTP’s. Furthermore, the bidentate inhibitors of 4-quinolone-3-carboxylic acids conjugated with aryl diketoacid or salicylic acid were cell permeable and enhanced insulin signaling in CHO/hIR cells. The kinetic studies and molecular modeling suggest that the 4-quinolone-3-carboxylates act as competitive inhibitors by binding to the PTP1B active site in the WPD loop closed conformation. Taken together, our study shows that the 4-quinolone-3-carboxylic acid derivatives exhibit improved pharmacological properties over previously described PTB1B inhibitors and warrant further preclinical studies.
- Subjects :
- Cell Membrane Permeability
Molecular model
Stereochemistry
Clinical Biochemistry
Cell
Carboxylic Acids
Pharmaceutical Science
CHO Cells
Biochemistry
Cell Line
chemistry.chemical_compound
Structure-Activity Relationship
Cricetulus
Drug Discovery
medicine
Animals
Humans
Enzyme Inhibitors
Molecular Biology
Protein Tyrosine Phosphatase, Non-Receptor Type 1
4-Quinolones
biology
Dose-Response Relationship, Drug
Molecular Structure
Aryl
Organic Chemistry
Active site
Insulin receptor
medicine.anatomical_structure
chemistry
biology.protein
Molecular Medicine
Bioisostere
Pharmacophore
Salicylic acid
Subjects
Details
- ISSN :
- 14643391
- Volume :
- 22
- Issue :
- 14
- Database :
- OpenAIRE
- Journal :
- Bioorganicmedicinal chemistry
- Accession number :
- edsair.doi.dedup.....bde9f9716ab73c35e5e7cba810198fb4