Literature DB >> 10975580

A simple method for the determination of individual rate constants for substrate hydrolysis by serine proteases.

Y M Ayala1, E Di Cera.   

Abstract

A simple method is presented for the determination of individual rate constants for substrate hydrolysis by serine proteases and other enzymes with similar catalytic mechanism. The method does not require solvent perturbation like viscosity changes, or solvent isotope effects, that often compromise nonspecifically the activity of substrate and enzyme. The rates of substrate diffusion into the active site (k1), substrate dissociation (k-1), acylation (k2), and deacylation (k3) in the accepted mechanism of substrate hydrolysis by serine proteases are derived from the temperature dependence of the Michaelis-Menten parameters kcat/Km and kcat. The method also yields the activation energies for these molecular events. Application to wild-type and mutant thrombins reveals how the various steps of the catalytic mechanism are affected by Na+-binding and site-directed mutations of the important residues Y225 in the Na+ binding environment and L99 in the S2 specificity site. Extension of this method to other proteases should enable the derivation of detailed information on the kinetic and energetic determinants of protease function.

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Year:  2000        PMID: 10975580      PMCID: PMC2144722          DOI: 10.1110/ps.9.8.1589

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  18 in total

1.  Coagulation factor IXa: the relaxed conformation of Tyr99 blocks substrate binding.

Authors:  K P Hopfner; A Lang; A Karcher; K Sichler; E Kopetzki; H Brandstetter; R Huber; W Bode; R A Engh
Journal:  Structure       Date:  1999-08-15       Impact factor: 5.006

2.  Unexpected crucial role of residue 225 in serine proteases.

Authors:  E R Guinto; S Caccia; T Rose; K Fütterer; G Waksman; E Di Cera
Journal:  Proc Natl Acad Sci U S A       Date:  1999-03-02       Impact factor: 11.205

3.  Role of Leu99 of thrombin in determining the P2 specificity of serpins.

Authors:  A R Rezaie
Journal:  Biochemistry       Date:  1997-06-17       Impact factor: 3.162

4.  Conservation and variability in the structures of serine proteinases of the chymotrypsin family.

Authors:  A M Lesk; W D Fordham
Journal:  J Mol Biol       Date:  1996-05-10       Impact factor: 5.469

5.  Large heat capacity change in a protein-monovalent cation interaction.

Authors:  E R Guinto; E Di Cera
Journal:  Biochemistry       Date:  1996-07-09       Impact factor: 3.162

6.  Rational engineering of activity and specificity in a serine protease.

Authors:  Q D Dang; E R Guinto; E di Cera
Journal:  Nat Biotechnol       Date:  1997-02       Impact factor: 54.908

Review 7.  Isotope effects: determination of enzyme transition state structure.

Authors:  W W Cleland
Journal:  Methods Enzymol       Date:  1995       Impact factor: 1.600

8.  Mechanistic studies on thrombin catalysis.

Authors:  S R Stone; A Betz; J Hofsteenge
Journal:  Biochemistry       Date:  1991-10-15       Impact factor: 3.162

9.  Thrombin is a Na(+)-activated enzyme.

Authors:  C M Wells; E Di Cera
Journal:  Biochemistry       Date:  1992-12-01       Impact factor: 3.162

10.  The 2.3 A crystal structure of the catalytic domain of recombinant two-chain human tissue-type plasminogen activator.

Authors:  D Lamba; M Bauer; R Huber; S Fischer; R Rudolph; U Kohnert; W Bode
Journal:  J Mol Biol       Date:  1996-04-26       Impact factor: 5.469

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  6 in total

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Authors:  Rajiv Jesudason; Susumu Sato; Harikrishnan Parameswaran; Ascanio D Araujo; Arnab Majumdar; Philip G Allen; Erzsébet Bartolák-Suki; Béla Suki
Journal:  Biophys J       Date:  2010-11-03       Impact factor: 4.033

2.  A link between hinge-bending domain motions and the temperature dependence of catalysis in 3-isopropylmalate dehydrogenase.

Authors:  István Hajdú; András Szilágyi; József Kardos; Péter Závodszky
Journal:  Biophys J       Date:  2009-06-17       Impact factor: 4.033

3.  Practical considerations when using temperature to obtain rate constants and activation thermodynamics of enzymes with two catalytic steps: native and N460T-beta-galactosidase (E. coli) as examples.

Authors:  John C Kappelhoff; Su Yi Judy Liu; Megan L Dugdale; Dayna L Dymianiw; Larry R Linton; Reuben E Huber
Journal:  Protein J       Date:  2009-02       Impact factor: 2.371

4.  Mechanistic studies on ADAMTS13 catalysis.

Authors:  Enrico Di Stasio; Stefano Lancellotti; Flora Peyvandi; Roberta Palla; Pier Mannuccio Mannucci; Raimondo De Cristofaro
Journal:  Biophys J       Date:  2008-05-23       Impact factor: 4.033

Review 5.  Thrombin.

Authors:  Enrico Di Cera
Journal:  Mol Aspects Med       Date:  2008-02-01

6.  Heparin modulates the endopeptidase activity of Leishmania mexicana cysteine protease cathepsin L-Like rCPB2.8.

Authors:  Wagner A S Judice; Marcella A Manfredi; Gerson P Souza; Thiago M Sansevero; Paulo C Almeida; Cláudio S Shida; Tarsis F Gesteira; Luiz Juliano; Gareth D Westrop; Sanya J Sanderson; Graham H Coombs; Ivarne L S Tersariol
Journal:  PLoS One       Date:  2013-11-21       Impact factor: 3.240

  6 in total

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