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A short, strong hydrogen bond in the active site of human carbonic anhydrase II.


ABSTRACT: The crystal structure of human carbonic anhydrase II (HCA II) obtained at 0.9 A resolution reveals that a water molecule, termed deep water, Dw, and bound in a hydrophobic pocket of the active site forms a short, strong hydrogen bond with the zinc-bound solvent molecule, a conclusion based on the observed oxygen-oxygen distance of 2.45 A. This water structure has similarities with hydrated hydroxide found in crystals of certain inorganic complexes. The energy required to displace Dw contributes in significant part to the weak binding of CO(2) in the enzyme-substrate complex, a weak binding that enhances k(cat) for the conversion of CO(2) into bicarbonate. In addition, this short, strong hydrogen bond is expected to contribute to the low pK(a) of the zinc-bound water and to promote proton transfer in catalysis.

SUBMITTER: Avvaru BS 

PROVIDER: S-EPMC2810610 | biostudies-literature | 2010 Jan

REPOSITORIES: biostudies-literature

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A short, strong hydrogen bond in the active site of human carbonic anhydrase II.

Avvaru Balendu Sankara BS   Kim Chae Un CU   Sippel Katherine H KH   Gruner Sol M SM   Agbandje-McKenna Mavis M   Silverman David N DN   McKenna Robert R  

Biochemistry 20100101 2


The crystal structure of human carbonic anhydrase II (HCA II) obtained at 0.9 A resolution reveals that a water molecule, termed deep water, Dw, and bound in a hydrophobic pocket of the active site forms a short, strong hydrogen bond with the zinc-bound solvent molecule, a conclusion based on the observed oxygen-oxygen distance of 2.45 A. This water structure has similarities with hydrated hydroxide found in crystals of certain inorganic complexes. The energy required to displace Dw contributes  ...[more]

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