Literature DB >> 235957

An acid induced conformational transition of denatured cytochrome c in urea and guanidine hydrochloride solutions.

T Y Tsong.   

Abstract

Previous work has shown that at neutral pH ferricytochrome c (horse heart) retains certain residual structures in concentrated solutions of urea or guanidine hydrochloride (Tsong, T. Y. (1974), J. Biol. Chem. 249, 1988). Present studies reveal that cooperative unfolding of these residual structures can be achieved by acidification of the protein to pH 4 in 9 M urea but can only be partially achieved in a 6 M guanidine hydrochloride solution. The evidence that the residual structures unfold in 9 M urea upon acidification is twofold. (1) Further uncoupling of the Trp-59-heme interaction occurs; this is reflected in the intensification of the tryptophan fluorescence from 55 to 90 percent relative to that of free tryptophan in the same solvent. (2) The intrinsic viscosity of the protein solution increases from 15.0 to 21 ml/g. The acidification also induces a spin-state transformation of the heme group at pH 5 both in urea and in guanidine hydrochloride. Acidic titration of the protein in urea and guanidine hydrochloride indicates that the unfolding involves the absorption of a single proton. However, the kinetics of the spin-state transformation are triphasic. These results suggest that the displacement of the ligand His-18 by a solvent molecule and the subsequent disintegration of the residual structures are complex processes and involve at least three kinetic steps. The ineffectiveness of guanidine hydrochloride as a denaturant for ferricytochrome c is shown to be due to the presence of the high concentration of Cl minus which can stabilize certain elements of the protein structure.

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Year:  1975        PMID: 235957     DOI: 10.1021/bi00678a031

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


  16 in total

1.  Cytochrome c folds through a smooth funnel.

Authors:  M Panda; M G Benavides-Garcia; M M Pierce; B T Nall
Journal:  Protein Sci       Date:  2000-03       Impact factor: 6.725

2.  Acid-induced folding of proteins.

Authors:  Y Goto; L J Calciano; A L Fink
Journal:  Proc Natl Acad Sci U S A       Date:  1990-01       Impact factor: 11.205

3.  Refolding rate of stability-enhanced cytochrome c is independent of thermodynamic driving force.

Authors:  W A McGee; B T Nall
Journal:  Protein Sci       Date:  1998-05       Impact factor: 6.725

4.  Thermal denaturation of iso-1-cytochrome c variants: comparison with solvent denaturation.

Authors:  L M Herrmann; B E Bowler
Journal:  Protein Sci       Date:  1997-03       Impact factor: 6.725

5.  Kinetics of reactivation of rabbit muscle aldolase after denaturation and dissociation in various solvent media.

Authors:  J Gerschitz; R Rudolph; R Jaenicke
Journal:  Biophys Struct Mech       Date:  1977-09-28

6.  Effect of an Imposed Contact on Secondary Structure in the Denatured State of Yeast Iso-1-cytochrome c.

Authors:  Travis A Danielson; Jessica M Stine; Tanveer A Dar; Klara Briknarova; Bruce E Bowler
Journal:  Biochemistry       Date:  2017-12-08       Impact factor: 3.162

7.  Ultrafast signals in protein folding and the polypeptide contracted state.

Authors:  T R Sosnick; M D Shtilerman; L Mayne; S W Englander
Journal:  Proc Natl Acad Sci U S A       Date:  1997-08-05       Impact factor: 11.205

Review 8.  The role of key residues in structure, function, and stability of cytochrome-c.

Authors:  Sobia Zaidi; Md Imtaiyaz Hassan; Asimul Islam; Faizan Ahmad
Journal:  Cell Mol Life Sci       Date:  2013-04-25       Impact factor: 9.261

9.  The significance of denaturant titrations of protein stability: a comparison of rat and baker's yeast cytochrome c and their site-directed asparagine-52-to-isoleucine mutants.

Authors:  T I Koshy; T L Luntz; B Plotkin; A Schejter; E Margoliash
Journal:  Biochem J       Date:  1994-04-15       Impact factor: 3.857

10.  Importance of contact persistence in denatured state loop formation: kinetic insights into sequence effects on nucleation early in folding.

Authors:  Franco O Tzul; Bruce E Bowler
Journal:  J Mol Biol       Date:  2009-05-06       Impact factor: 5.469

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