Literature DB >> 1645192

Kinetic and thermodynamic properties of wild-type and engineered mutants of tyrosyl-tRNA synthetase analyzed by pyrophosphate-exchange kinetics.

T N Wells1, J W Knill-Jones, T E Gray, A R Fersht.   

Abstract

The first step of the reaction catalyzed by the aminoacyl-tRNA synthetases is the formation of enzyme-bound aminoacyl adenylate. The steady-state kinetics of this step has conventionally been studied by measuring the rate of isotopic exchange between pyrophosphate and ATP. A simple kinetic analysis of the pyrophosphate-exchange reaction catalyzed by the tyrosyl-tRNA synthetase from Bacillus stearothermophilus is given in which all the observed rate and binding constants can be assigned to identifiable physical processes under a variety of limiting conditions. The free energies of binding to the enzyme of tyrosine, ATP, and the transition state for tyrosyl adenylate formation can be measured in relatively straightforward experiments. The excellent agreement between parameters measured in these experiments and those from earlier pre-steady-state kinetics confirms that the intermediates isolated in the presteady state are kinetically competent. The dissociation constant of ATP from the unligated enzyme, a constant that has previously been experimentally inaccessible, has been measured for wild-type and several mutant enzymes. The changes in enthalpy and entropy of activation on mutation have been measured by a rapid procedure for mutants that have altered contacts with tyrosine and ATP. Those mutants that have large changes of enthalpy and entropy of binding are likely to have structural changes and so warrant further examination by protein crystallography.

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Year:  1991        PMID: 1645192     DOI: 10.1021/bi00235a006

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  5 in total

1.  Substrate recognition by class I lysyl-tRNA synthetases: a molecular basis for gene displacement.

Authors:  M Ibba; H C Losey; Y Kawarabayasi; H Kikuchi; S Bunjun; D Söll
Journal:  Proc Natl Acad Sci U S A       Date:  1999-01-19       Impact factor: 11.205

2.  Mg2+-assisted catalysis by B. stearothermophilus TrpRS is promoted by allosteric effects.

Authors:  Violetta Weinreb; Li Li; Cassandra L Campbell; Laurie S Kaguni; Charles W Carter
Journal:  Structure       Date:  2009-07-15       Impact factor: 5.006

3.  Thermodynamic analysis reveals a temperature-dependent change in the catalytic mechanism of bacillus stearothermophilus tyrosyl-tRNA synthetase.

Authors:  Gyanesh Sharma; Eric A First
Journal:  J Biol Chem       Date:  2008-12-20       Impact factor: 5.157

4.  Isolation and characterization of an Escherichia coli seryl-tRNA synthetase mutant with a large increase in Km for serine.

Authors:  J C Willison; M Härtlein; R Leberman
Journal:  J Bacteriol       Date:  1995-06       Impact factor: 3.490

5.  Activation of D-tyrosine by Bacillus stearothermophilus tyrosyl-tRNA synthetase: 2. Cooperative binding of ATP is limited to the initial turnover of the enzyme.

Authors:  Anita Sheoran; Eric A First
Journal:  J Biol Chem       Date:  2008-03-04       Impact factor: 5.157

  5 in total

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