| Literature DB >> 34328515 |
Denis Baronas1, Virginija Dudutienė1, Vaida Paketurytė1, Visvaldas Kairys2, Alexey Smirnov1, Vaida Juozapaitienė1, Aivaras Vaškevičius1, Elena Manakova3, Saulius Gražulis3, Asta Zubrienė1, Daumantas Matulis4.
Abstract
Zinc-containing metalloenzyme carbonic anhydrase (CA) binds primary sulfonamides with extremely high, up to picomolar, affinity by forming a coordination bond between the negatively charged amino group and the zinc ion and making hydrogen bonds and hydrophobic contacts with other parts of the inhibitor molecule. However, N-methyl-substituted, secondary or tertiary sulfonamides bind CA with much lower affinity. In search for an explanation for this diminished affinity, a series of secondary sulfonamides were synthesized and, together with analogous primary sulfonamides, the affinities for 12 recombinant catalytically active human CA isoforms were determined by the fluorescent thermal shift assay, stopped-flow assay of the inhibition of enzymatic activity and isothermal titration calorimetry. The binding profile of secondary sulfonamides as a function of pH showed the same U-shape dependence seen for primary sulfonamides. This dependence demonstrated that there were protein binding-linked protonation reactions that should be dissected for the estimation of the intrinsic binding constants to perform structure-thermodynamics analysis. X-ray crystallographic structures of secondary sulfonamides and computational modeling dissected the atomic contributions to the binding energetics. Secondary sulfonamides bind to carbonic anhydrases via coordination bond between the negatively charged nitrogen of alkylated amino group and Zn(II) in the active site of CA. The binding reaction is linked to deprotonation of the amino group and protonation of the Zn(II)-bound hydroxide. To perform the structure-thermodynamics analysis, contributions of these linked reactions must be subtracted to determine the intrinsic energetics. In this aspect, the secondary sulfonamides are similar to primary sulfonamides as CA inhibitors.Entities:
Keywords: Carbonic anhydrase; N-substituted secondary sulfonamide; Protein–ligand binding; Sulfonamide; Thermal shift assay; Thermodynamics of ligand binding; X-ray crystallography
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Year: 2021 PMID: 34328515 DOI: 10.1007/s00249-021-01561-1
Source DB: PubMed Journal: Eur Biophys J ISSN: 0175-7571 Impact factor: 1.733