Literature DB >> 240855

Self-association of lysozyme. Thermochemical measurements: effect of chemical modification of Trp-62, Trp-108, and Glu-35.

S K Banerjee, A Pogolotti, J A Rupley.   

Abstract

Heats of dilution and of saccharide binding for hen egg white lysozyme have been measured at 30 degrees, 0.1 ionic strength, and pH 7 over the range 3 to 95 mg of protein/ml. The concentration dependence of the apparent relative molar enthalpy of lysozyme derived from these results gives the thermodynamic parameters for the formation of an intermolecular contact in an indefinite (head-to-tail) self-association process as delta G 0 = -3.9 kcal/mol, delta H 0 = -6.4 kcal/mol, and delta S 0 = -8,3 e.u. Oxindolealanine-62-lysozyme does not undergo self-association reactions that can be detected calorimetrically. This derivative reacts with native lysozyme to form hybrid polymeric species with free energy and enthalpy of interaction similar to those for the polymers of native lysozyme. These results are consistent with the intermolecular contact in the self-assocaition of lysozyme being asymmetric (head-to-tail). The heat of dilution of the derivative of lysozyme in which Glu-35 is blocked as the ester with oxindolealanine-108 is like that observed for native lysozyme in acid solution and is independent of pH. The concentration difference spectrum that develops through self-association is of the shape expected for introduction of an indole chromophore into a charge-free region of the intermolecular contact. The foregoing results indicate that Glu-35 and Trp-62 are part of the contact, that perturbation of Trp-108 does not make a principle contribution to the concentration difference spectrum, and that no acid group other than Glu-35 is perturbed by self-association. There is a small change in the heat of (GlcNAc)3 binding over the range 0.005 to 0.034 M saccharide. These data give the value of -1 kcal/mol for the enthalpy change for formation of the 2:1 saccharide-enzyme complex (ES2) from ES and S.

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Year:  1975        PMID: 240855

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  7 in total

1.  Observation of individual carboxyl groups in hen egg-white lysozyme by use of high field 13C-nuclear magnetic resonance.

Authors:  H Shindo; J S Cohen
Journal:  Proc Natl Acad Sci U S A       Date:  1976-06       Impact factor: 11.205

2.  Investigation of the Interaction Between Human Serum Albumin and Two Drugs as Binary and Ternary Systems.

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Journal:  Eur J Drug Metab Pharmacokinet       Date:  2016-12       Impact factor: 2.441

3.  Interactions of lysozyme in concentrated electrolyte solutions from dynamic light-scattering measurements.

Authors:  D E Kuehner; C Heyer; C Rämsch; U M Fornefeld; H W Blanch; J M Prausnitz
Journal:  Biophys J       Date:  1997-12       Impact factor: 4.033

4.  A biophysical model of lysozyme self-association.

Authors:  O G Hampe; C V Tondo; A Hasson-Voloch
Journal:  Biophys J       Date:  1982-10       Impact factor: 4.033

5.  Binding of lysozyme to phospholipid bilayers: evidence for protein aggregation upon membrane association.

Authors:  Galyna P Gorbenko; Valeriya M Ioffe; Paavo K J Kinnunen
Journal:  Biophys J       Date:  2007-04-13       Impact factor: 4.033

6.  2-nitro-5-thiosulfobenzoic acid as a novel inhibitor specific for deoxyribonuclease I.

Authors:  Wei-Jung Chen; Ta-Hsiu Liao
Journal:  Protein J       Date:  2008-06       Impact factor: 2.371

7.  The stability and formation of native proteins from unfolded monomers is increased through interactions with unrelated proteins.

Authors:  Claudia Rodríguez-Almazán; Francisco J Torner; Miguel Costas; Ruy Pérez-Montfort; Marieta Tuena de Gómez-Puyou; Armando Gómez Puyou
Journal:  PLoS One       Date:  2007-06-06       Impact factor: 3.240

  7 in total

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