Literature DB >> 17628591

Searching for multiple folding pathways of a nearly symmetrical protein: temperature dependent phi-value analysis of the B domain of protein A.

Satoshi Sato1, Alan R Fersht.   

Abstract

The B domain of protein A (BdpA) is a popular paradigm for simulating protein folding pathways. The discrepancies between so many simulations and subsequent experimental testing may be attributable to the protein being highly symmetrical: changing experimental conditions could perturb the subtle interplay between the effects of symmetry in the native structure and the effects of asymmetry from specific interactions in a given sequence. If the protein folds via multiple pathways, perturbations, such as temperature, denaturant concentration, and mutation, should change the flux of micro pathways, leading to changes in the bulk properties of the transition state. We tested this hypothesis by conducting a Phi-analysis of BdpA as a function of temperature from 25.0 degrees C to 60.0 degrees C. The Phi-values had no significant dependence on temperature and the values at 55.0 degrees C (denaturing conditions) are very similar to those at 25.0 degrees C (folding conditions), indicating the structure of the transition state does not significantly change although the experimental conditions are considerably altered. The results suggest that BdpA folds via a single dominant folding pathway.

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Year:  2007        PMID: 17628591     DOI: 10.1016/j.jmb.2007.06.043

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


  19 in total

1.  Induced fit or conformational selection for RNA/U1A folding.

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2.  Folding domain B of protein A on a dynamically partitioned free energy landscape.

Authors:  Erik D Nelson; Nick V Grishin
Journal:  Proc Natl Acad Sci U S A       Date:  2008-01-29       Impact factor: 11.205

Review 3.  Mechanisms of protein folding.

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Journal:  Eur Biophys J       Date:  2008-01-09       Impact factor: 1.733

4.  Folding processes of the B domain of protein A to the native state observed in all-atom ab initio folding simulations.

Authors:  Hongxing Lei; Chun Wu; Zhi-Xiang Wang; Yaoqi Zhou; Yong Duan
Journal:  J Chem Phys       Date:  2008-06-21       Impact factor: 3.488

5.  Simultaneous Determination of Two Subdomain Folding Rates Using the "Transfer-Quench" Method.

Authors:  Gil Rahamim; Dan Amir; Elisha Haas
Journal:  Biophys J       Date:  2017-05-09       Impact factor: 4.033

6.  Fast helix formation in the B domain of protein A revealed by site-specific infrared probes.

Authors:  Caitlin M Davis; A Kat Cooper; R Brian Dyer
Journal:  Biochemistry       Date:  2015-02-27       Impact factor: 3.162

7.  The folding transition state of protein L is extensive with nonnative interactions (and not small and polarized).

Authors:  Tae Yeon Yoo; Aashish Adhikari; Zhen Xia; Tien Huynh; Karl F Freed; Ruhong Zhou; Tobin R Sosnick
Journal:  J Mol Biol       Date:  2012-04-18       Impact factor: 5.469

8.  Quantifying the structural requirements of the folding transition state of protein A and other systems.

Authors:  Michael C Baxa; Karl F Freed; Tobin R Sosnick
Journal:  J Mol Biol       Date:  2008-07-01       Impact factor: 5.469

9.  Engineered solubility tag for solution NMR of proteins.

Authors:  Amy M Ruschak; Justine D Rose; Michael P Coughlin; Tomasz L Religa
Journal:  Protein Sci       Date:  2013-09-20       Impact factor: 6.725

10.  Molecular dynamics simulation of phosphorylated KID post-translational modification.

Authors:  Hai-Feng Chen
Journal:  PLoS One       Date:  2009-08-05       Impact factor: 3.240

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