Article

Reversible covalent inhibition of a phenol sulfotransferase by coenzyme A.

Department of Biochemistry, Alma College, Alma, MI 48801, USA.
Archives of Biochemistry and Biophysics (impact factor: 2.93). 02/2007; 457(2):197-204. DOI:10.1016/j.abb.2006.10.016 pp.197-204
Source: PubMed

ABSTRACT Phenol sulfotransferases (SULTs), which normally bind 3'-phosphoadenosine-5'-phosphosulfate as the donor substrate, are inhibited by CoA and its thioesters. Here, we report that inhibition of bovine SULT1A1 by CoA is time-dependent at neutral pH under non-reducing conditions. The rates of inactivation by CoA indicate an initial reversible SULT:CoA complex with a dissociation constant of 5.7 microM and an inactivation rate constant of 0.07 min(-1). Titrations with CoA and prolonged incubations reveal that inactivation of the dimeric enzyme is stoichiometric, consistent with the observation of complete conversion of the protein to a slightly decreased electrophoretic mobility. Both activity and normal electrophoretic migration are restored by 2-mercaptoethanol. Mutagenesis demonstrated that Cys168 is the site of CoA adduction, and a consistent model was constructed that reveals a new SULT molecular dynamic. Cysteine reaction kinetics with Ellman's reagent revealed a PAPS-induced structural change consistent with the model that accounts for binding of CoA.

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Keywords

bind 3'-phosphoadenosine-5'-phosphosulfate
 
CoA
 
CoA adduction
 
complete conversion
 
consistent
 
consistent model
 
Cysteine reaction kinetics
 
decreased electrophoretic mobility
 
dimeric enzyme
 
donor substrate
 
Ellman's reagent
 
inhibition
 
Mutagenesis
 
neutral pH
 
new SULT molecular dynamic
 
normal electrophoretic migration
 
PAPS-induced structural change consistent
 
Phenol sulfotransferases
 
SULTs
 
Titrations