Literature DB >> 2039472

Effect of Mg2+ and Mn2+ on isocitrate lyase, a non-essentially metal-ion-activated enzyme. A graphical approach for the discrimination of the model for activation.

E Giachetti1, P Vanni.   

Abstract

We describe a simple method for the analysis of activation systems in which a metal ion modifier may combine with either the enzyme or the substrate (or both) and the metal ion-substrate complex is the true substrate of the enzyme reaction. The suggested approach is essentially a 'graphical' method that both provides unbiased criteria for the choice of the activation mechanism and yields good rough estimates of the kinetic parameters. The procedure, tested on a variety of simulated models, produces appropriate and reliable results. Applying this treatment to isocitrate lyase, we confirmed the data previously reported for Mg2+ [Giachetti, Pinzauti, Bonaccorsi & Vanni (1988) Eur. J. Biochem. 172, 85-92], and we found that Mn2+ functions with the same mechanism as does Mg2+, but with quite different kinetic constants. In particular, its ratio of the Vmax, values of the activated and the non-activated enzyme is less than 1, and thus Mn2+ is to be considered an inhibitor rather than an activator.

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Year:  1991        PMID: 2039472      PMCID: PMC1151168          DOI: 10.1042/bj2760223

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  8 in total

1.  Statistical estimations in enzyme kinetics.

Authors:  G N WILKINSON
Journal:  Biochem J       Date:  1961-08       Impact factor: 3.857

2.  Approaches to kinetic studies on metal-activated enzymes.

Authors:  J F Morrison
Journal:  Methods Enzymol       Date:  1979       Impact factor: 1.600

3.  A new procedure to derive weighting factors for nonlinear regression analysis applied to enzyme kinetic data.

Authors:  B Mannervik; I Jakobson; M Warholm
Journal:  Biochim Biophys Acta       Date:  1979-03-16

4.  Nicotinamide adenine dinucleotide-specific isocitrate dehydrogenase from a higher plant. The requirement for free and metal-complexed isocitrate.

Authors:  R G Duggleby; D T Dennis
Journal:  J Biol Chem       Date:  1970-08-10       Impact factor: 5.157

5.  Regulation and mechanism of phosphoribosylpyrophosphate synthetase. 3. Kinetic studies of the reaction mechanism.

Authors:  R L Switzer
Journal:  J Biol Chem       Date:  1971-04-25       Impact factor: 5.157

6.  Kinetics of enzyme reactions with interaction between a substrate and a (metal) modifier.

Authors:  W P London; T L Steck
Journal:  Biochemistry       Date:  1969-04       Impact factor: 3.162

7.  An isocitrate lyase of higher plants: analysis and comparison of some molecular properties.

Authors:  G Pinzauti; E Giachetti; G Camici; G Manao; G Cappugi; P Vanni
Journal:  Arch Biochem Biophys       Date:  1986-01       Impact factor: 4.013

8.  Isocitrate lyase from Pinus pinea. Characterization of its true substrate and the action of magnesium ions.

Authors:  E Giachetti; G Pinzauti; R Bonaccorsi; P Vanni
Journal:  Eur J Biochem       Date:  1988-02-15
  8 in total
  3 in total

1.  Role of Mg2+ in the structure and activity of maize (Zea mays L.) isocitrate lyase: indications for hysteretic behaviour.

Authors:  S Beeckmans; A S Khan; E Van Driessche
Journal:  Biochem J       Date:  1997-10-01       Impact factor: 3.857

2.  Multisite inhibition of Pinus pinea isocitrate lyase by phosphate.

Authors:  F Ranaldi; P Vanni; E Giachetti
Journal:  Plant Physiol       Date:  2000-11       Impact factor: 8.340

3.  Development of NMR and thermal shift assays for the evaluation of Mycobacterium tuberculosis isocitrate lyase inhibitors.

Authors:  Ram Prasad Bhusal; Krunal Patel; Brooke X C Kwai; Anne Swartjes; Ghader Bashiri; Jóhannes Reynisson; Jonathan Sperry; Ivanhoe K H Leung
Journal:  Medchemcomm       Date:  2017-10-17       Impact factor: 3.597

  3 in total

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