Literature DB >> 9149152

Thermodynamics of denaturation of mutants of barnase with disulfide crosslinks.

C M Johnson1, M Oliveberg, J Clarke, A R Fersht.   

Abstract

We have measured the effects of disulfide crosslinks on the thermodynamics of denaturation of three mutants of barnase that contain cystine and the corresponding single and double cysteine mutants. At first sight, the data are consistent with the hypothesis that disulfide crosslinks stabilise proteins through entropic destabilisation of the denatured state, but the decreases in the entropy of denaturation are larger than predicted and are accompanied by decreases in the enthalpy of denaturation. These effects are not a unique feature of the disulfide crosslink and are observed in a range of non-crosslinked mutants of barnase as part of a general enthalpy-entropy compensation phenomenon. Similarly, effects on the heat capacity change for denaturation (delta C(p)d), determined from the slope of the enthalpy of denaturation versus temperature, are not confined to mutants with disulfide crosslinks. The value of delta C(p)d is lower in four stabilised mutants than in wild-type barnase, irrespective of the presence of a disulfide crosslink, while the delta C(p)d remains unchanged in a destabilised mutant containing a disulfide. The variation in delta C(p)d may result from an inherent temperature-dependence of delta C(p)d, since it is measured for each mutant over a different temperature range. The thermodynamics of denaturation of the disulfide mutant with a crosslink between positions 70 and 92 change anomalously with pH but in a similar way to that of the D93N mutant of barnase, which lacks the D93-R69 salt-bridge present in the wild-type. This finding confirms initial observations in the X-ray structure of this disulfide mutant that the salt-bridge has been disrupted by the introduced crosslink.

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Year:  1997        PMID: 9149152     DOI: 10.1006/jmbi.1997.0928

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  9 in total

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Review 4.  Impact of physiochemical properties on pharmacokinetics of protein therapeutics.

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5.  Disulfide bond effects on protein stability: designed variants of Cucurbita maxima trypsin inhibitor-V.

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6.  Insights from molecular dynamics simulations for computational protein design.

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7.  "Cooperative collapse" of the denatured state revealed through Clausius-Clapeyron analysis of protein denaturation phase diagrams.

Authors:  Alexander Tischer; Venkata R Machha; Jörg Rösgen; Matthew Auton
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8.  All-atom model for stabilization of alpha-helical structure in peptides by hydrocarbon staples.

Authors:  Peter S Kutchukian; Jae Shick Yang; Gregory L Verdine; Eugene I Shakhnovich
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9.  Engineering a disulfide bond in the lid hinge region of Rhizopus chinensis lipase: increased thermostability and altered acyl chain length specificity.

Authors:  Xiao-Wei Yu; Nian-Jiang Tan; Rong Xiao; Yan Xu
Journal:  PLoS One       Date:  2012-10-02       Impact factor: 3.240

  9 in total

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