Literature DB >> 18299293

Conservation of mechanism, variation of rate: folding kinetics of three homologous four-helix bundle proteins.

Seema Dalal1, Denis Canet, Stephen E Kaiser, Christopher M Dobson, Lynne Regan.   

Abstract

The amino acid sequence of a protein determines both its final folded structure and the folding mechanism by which this structure is attained. The differences in folding behaviour between homologous proteins provide direct insights into the factors that influence both thermodynamic and kinetic properties. Here, we present a comprehensive thermodynamic and kinetic analysis of three homologous homodimeric four-helix bundle proteins. Previous studies with one member of this family, Rop, revealed that both its folding and unfolding behaviour were interesting and unusual: Rop folds (k(0)(f) = 29 s(-1)) and unfolds (k(0)(u) = 6 x 10(-7) s(-1)) extremely slowly for a protein of its size that contains neither prolines nor disulphides in its folded structure. The homologues we discuss have significantly different stabilities and rates of folding and unfolding. However, the rate of protein folding directly correlates with stability for these homologous proteins: proteins with higher stability fold faster. Moreover, in spite of possessing differing thermodynamic and kinetic properties, the proteins all share a similar folding and unfolding mechanism. We discuss the properties of these naturally occurring Rop homologues in relation to previously characterized designed variants of Rop.

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Year:  2008        PMID: 18299293     DOI: 10.1093/protein/gzm088

Source DB:  PubMed          Journal:  Protein Eng Des Sel        ISSN: 1741-0126            Impact factor:   1.650


  3 in total

1.  Interplay between drying and stability of a TIM barrel protein: a combined simulation-experimental study.

Authors:  Payel Das; Divya Kapoor; Kevin T Halloran; Ruhong Zhou; C Robert Matthews
Journal:  J Am Chem Soc       Date:  2013-01-25       Impact factor: 15.419

2.  Cysteine-free Rop: a four-helix bundle core mutant has wild-type stability and structure but dramatically different unfolding kinetics.

Authors:  Sanjay B Hari; Chang Byeon; Jason J Lavinder; Thomas J Magliery
Journal:  Protein Sci       Date:  2010-04       Impact factor: 6.725

Review 3.  What lessons can be learned from studying the folding of homologous proteins?

Authors:  Adrian A Nickson; Jane Clarke
Journal:  Methods       Date:  2010-06-04       Impact factor: 3.608

  3 in total

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