Establishment, validation and application of a spectrophotometric method for the accurate determination of carbonic anhydrase activity. [PDF]
Liu X, Tian R, Mi H, Guo W, Chen G.
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Carbonic Anhydrase 3 Overexpression Modulates Signalling Pathways Associated with Cellular Stress Resilience and Proteostasis. [PDF]
Yu Y +8 more
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X-ray analysis of complexes of carbonic anhydrase II with 1,3-oxazole-containing sulfonamide derivatives elucidates the structural basis for their exceptionally high inhibitory potency. [PDF]
Stoliarskaia MY +5 more
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Reduction of carbonic anhydrase activity is associated with amelioration of obstructive sleep apnea. [PDF]
Komai AM +5 more
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Genomic and metagenomic survey of microbial carbonic anhydrase genes reveals novel clades, high diversity, and biome specificity. [PDF]
Franco MEE +4 more
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AAVs targeting human carbonic anhydrase IV enhance gene delivery to the brain. [PDF]
Lin C +14 more
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First-in-Class Dual PDGFR/Carbonic Anhydrase IX/XII Inhibitors: 6,7-Dimethoxyquinoline-Sulfonamides as Promising Antileukemic Agents. [PDF]
Roshdy E +12 more
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HUMAN CARBONIC ANHYDRASES AND CARBONIC ANHYDRASE DEFICIENCIES
Annual Review of Biochemistry, 1995Carbonic anhydrases (CAs I-VII) are products of a gene family that encodes seven isozymes and several homologous, CA- related proteins. All seven isozymes have been cloned, sequenced, and mapped, and the intron-exon organization of five genes established. They differ in subcellular localizations, being cytoplasmic (CA I, II, III, and VII), GPI-anchored
W S, Sly, P Y, Hu
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