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Refined structure of human carbonic anhydrase II at 2.0 Å resolution

Proteins Structure Function and Bioinformatics · 1988 · Vol. 4(4) · pp. 274–282
A.E. Sauer-ErikssonT. Alwyn JonesAnders Liljas

Abstract

The structure of human erythrocytic carbonic anhydrase II has been refined by constrained and restrained structure-factor least-squares refinement at 2.0 A resolution. The conventional crystallographic R value is 17.3%. Of 167 solvent molecules associated with the protein, four are buried and stabilize secondary structure elements. The zinc ion is ligated to three histidyl residues and one water molecule in a nearly tetrahedral geometry. In addition to the zinc-bound water, seven more water molecules are identified in the active site. Assuming that Glu-106 is deprotonated at pH 8.5, some of the hydrogen bond donor-acceptor relations in the active site can be assigned and are described here in detail. The O gamma 1 atom of Thr-199 donates its proton to the O epsilon 1 atom of Glu-106 and can function as a hydrogen bond acceptor only in additional hydrogen bonds.

Enzyme function and inhibitionHemoglobin structure and functionMass Spectrometry Techniques and ApplicationsChemistryHydrogen bondCarbonic anhydrase IIMoleculeAcceptorDeprotonationCarbonic anhydraseCrystallographyActive siteZinc

MeSH terms

Binding SitesCarbonic AnhydrasesErythrocytesHumansHydrogen BondingModels, MolecularProtein ConformationSoftwareZinc
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References
A graphics model building and refinement system for macromolecules
Journal of Applied Crystallography · 1978 · 1,849 citations
The interpretation of protein structures: Estimation of static accessibility
Journal of Molecular Biology · 1971 · 5,866 citations
Stereochemistry of polypeptide chain configurations
Journal of Molecular Biology · 1963 · 3,528 citations
Proteins. Structures and molecular properties
Analytical Biochemistry · 1984 · 1,304 citations
Computing in crystallography
Journal of Molecular Structure · 1980 · 418 citations
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