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Unprotected primary sulfonamide group facilitates ring-forming cascade en route to polycyclic [1,4]oxazepine-based carbonic anhydrase inhibitors
- Source :
- Bioorganic chemistry. 76
- Publication Year :
- 2017
-
Abstract
- 4-Chloro-3-nitrobenzenesulfonamide reacted cleanly at room-temperature with a range of bis-electrophilic phenols bearing an NH-acidic functionality (secondary carboxamide or pyrazole) in the ortho-position. This produced a novel class of [1,4]oxazepine-based primary sulfonamides which exhibited strong inhibition of therapeutically relevant human carbonic anhydrases. 2-Chloronitrobenzene did not enter a similar cyclocondensation process, even under prolonged heating. Thus, the primary sulfonamide functionality plays a dual role by enabling the [1,4]oxazepine ring construction and acting as a enzyme prosthetic zinc-binding group when the resulting [1,4]oxazepine sulfonamides are employed as carbonic anhydrase inhibitors.
- Subjects :
- Stereochemistry
medicine.drug_class
Carboxamide
Pyrazole
Ring (chemistry)
01 natural sciences
Biochemistry
Carbonic Anhydrase II
chemistry.chemical_compound
Carbonic Anhydrase IV
Nucleophilic aromatic substitution
Carbonic anhydrase
Drug Discovery
medicine
Humans
Carbonic Anhydrase Inhibitors
Molecular Biology
Enzyme Assays
chemistry.chemical_classification
Sulfonamides
biology
010405 organic chemistry
Organic Chemistry
0104 chemical sciences
Sulfonamide
010404 medicinal & biomolecular chemistry
Oxazepines
Enzyme
chemistry
Cyclization
biology.protein
Oxazepine
Subjects
Details
- ISSN :
- 10902120
- Volume :
- 76
- Database :
- OpenAIRE
- Journal :
- Bioorganic chemistry
- Accession number :
- edsair.doi.dedup.....348ed62132eed900273b2d66b37f4aed