Literature DB >> 6430199

Kinetics and mechanism of carbonic anhydrase isoenzymes.

S Lindskog, P Engberg, C Forsman, S A Ibrahim, B H Jonsson, I Simonsson, L Tibell.   

Abstract

A mechanism model has been presented that can describe most known kinetic properties of carbonic anhydrase isoenzymes I, II, and III. The essential features of this model include: Nucleophilic attack of metal-bound OH- on CO2 to form metal-bound HCO-3. Formation of metal-bound OH- from metal-bound H2O. In isoenzyme II, and probably also in isoenzyme I, this reaction step involves an intramolecular transfer of H+ between the metal site and a titratable histidine residue via a number of hydrogen-bonded H2O molecules. In isoenzyme II, this step limits the maximal rate of catalysis. Also in isoenzyme III, the H2O-splitting step may be rate limiting, but since this isoenzyme has no titratable active-site histidine, H+ transfer may take place directly with components of the solvent. In isoenzymes I and II, rapid H+ transfer between active site and solution proceeds in a reaction between the titratable histidine residue and buffer molecules. The model can also rationalize a variety of observed inhibition patterns.

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Year:  1984        PMID: 6430199     DOI: 10.1111/j.1749-6632.1984.tb12315.x

Source DB:  PubMed          Journal:  Ann N Y Acad Sci        ISSN: 0077-8923            Impact factor:   5.691


  5 in total

1.  Structure determination of murine mitochondrial carbonic anhydrase V at 2.45-A resolution: implications for catalytic proton transfer and inhibitor design.

Authors:  P A Boriack-Sjodin; R W Heck; P J Laipis; D N Silverman; D W Christianson
Journal:  Proc Natl Acad Sci U S A       Date:  1995-11-21       Impact factor: 11.205

2.  Immunohistochemistry of carbonic anhydrase in human placenta and fetal membranes.

Authors:  J Mühlhauser; C Crescimanno; H Rajaniemi; S Parkkila; A P Milovanov; M Castellucci; P Kaufmann
Journal:  Histochemistry       Date:  1994-02

Review 3.  Carbonic anhydrases in normal gastrointestinal tract and gastrointestinal tumours.

Authors:  Antti-J Kivelä; Jyrki Kivelä; Juha Saarnio; Seppo Parkkila
Journal:  World J Gastroenterol       Date:  2005-01-14       Impact factor: 5.742

4.  The zinc complex catalyzed hydration of alkyl isothiocyanates.

Authors:  Wilhelm A Eger; Burkhard O Jahn; Ernst Anders
Journal:  J Mol Model       Date:  2008-12-16       Impact factor: 1.810

5.  Characterization of Medicago truncatula (barrel medic) hydroperoxide lyase (CYP74C3), a water-soluble detergent-free cytochrome P450 monomer whose biological activity is defined by monomer-micelle association.

Authors:  Richard K Hughes; Eric J Belfield; Mylrajan Muthusamay; Anuja Khan; Arthur Rowe; Stephen E Harding; Shirley A Fairhurst; Stephen Bornemann; Ruth Ashton; Roger N F Thorneley; Rod Casey
Journal:  Biochem J       Date:  2006-05-01       Impact factor: 3.857

  5 in total

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