Literature DB >> 11222312

Pressure-jump small-angle x-ray scattering detected kinetics of staphylococcal nuclease folding.

J Woenckhaus1, R Köhling, P Thiyagarajan, K C Littrell, S Seifert, C A Royer, R Winter.   

Abstract

The kinetics of chain disruption and collapse of staphylococcal nuclease after positive or negative pressure jumps was monitored by real-time small-angle x-ray scattering under pressure. We used this method to probe the overall conformation of the protein by measuring its radius of gyration and pair-distance-distribution function p(r) which are sensitive to the spatial extent and shape of the particle. At all pressures and temperatures tested, the relaxation profiles were well described by a single exponential function. No fast collapse was observed, indicating that the rate limiting step for chain collapse is the same as that for secondary and tertiary structure formation. Whereas refolding at low pressures occurred in a few seconds, at high pressures the relaxation was quite slow, approximately 1 h, due to a large positive activation volume for the rate-limiting step for chain collapse. A large increase in the system volume upon folding implies significant dehydration of the transition state and a high degree of similarity in terms of the packing density between the native and transition states in this system. This study of the time-dependence of the tertiary structure in pressure-induced folding/unfolding reactions demonstrates that novel information about the nature of protein folding transitions and transition states can be obtained from a combination of small-angle x-ray scattering using high intensity synchrotron radiation with the high pressure perturbation technique.

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Year:  2001        PMID: 11222312      PMCID: PMC1301343          DOI: 10.1016/S0006-3495(01)76124-3

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  33 in total

1.  Chain collapse can occur concomitantly with the rate-limiting step in protein folding.

Authors:  K W Plaxco; I S Millett; D J Segel; S Doniach; D Baker
Journal:  Nat Struct Biol       Date:  1999-06

2.  Folding of a pressure-denatured model protein.

Authors:  R Mohana-Borges; J L Silva; J Ruiz-Sanz; G de Prat-Gay
Journal:  Proc Natl Acad Sci U S A       Date:  1999-07-06       Impact factor: 11.205

3.  Exploring the temperature-pressure phase diagram of staphylococcal nuclease.

Authors:  G Panick; G J Vidugiris; R Malessa; G Rapp; R Winter; C A Royer
Journal:  Biochemistry       Date:  1999-03-30       Impact factor: 3.162

4.  Structural characterization of the pressure-denatured state and unfolding/refolding kinetics of staphylococcal nuclease by synchrotron small-angle X-ray scattering and Fourier-transform infrared spectroscopy.

Authors:  G Panick; R Malessa; R Winter; G Rapp; K J Frye; C A Royer
Journal:  J Mol Biol       Date:  1998-01-16       Impact factor: 5.469

5.  Kinetics of lysozyme refolding: structural characterization of a non-specifically collapsed state using time-resolved X-ray scattering.

Authors:  L Chen; G Wildegger; T Kiefhaber; K O Hodgson; S Doniach
Journal:  J Mol Biol       Date:  1998-02-13       Impact factor: 5.469

6.  Dimensions of protein random coils.

Authors:  W G Miller; C V Goebel
Journal:  Biochemistry       Date:  1968-11       Impact factor: 3.162

7.  Three-state thermodynamic analysis of the denaturation of staphylococcal nuclease mutants.

Authors:  J H Carra; E A Anderson; P L Privalov
Journal:  Biochemistry       Date:  1994-09-06       Impact factor: 3.162

Review 8.  High pressure effects on proteins and other biomolecules.

Authors:  K Heremans
Journal:  Annu Rev Biophys Bioeng       Date:  1982

9.  Transient dimer in the refolding kinetics of cytochrome c characterized by small-angle X-ray scattering.

Authors:  D J Segel; D Eliezer; V Uversky; A L Fink; K O Hodgson; S Doniach
Journal:  Biochemistry       Date:  1999-11-16       Impact factor: 3.162

10.  Genetic analysis of staphylococcal nuclease: identification of three intragenic "global" suppressors of nuclease-minus mutations.

Authors:  D Shortle; B Lin
Journal:  Genetics       Date:  1985-08       Impact factor: 4.562

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  14 in total

1.  Random-coil behavior and the dimensions of chemically unfolded proteins.

Authors:  Jonathan E Kohn; Ian S Millett; Jaby Jacob; Bojan Zagrovic; Thomas M Dillon; Nikolina Cingel; Robin S Dothager; Soenke Seifert; P Thiyagarajan; Tobin R Sosnick; M Zahid Hasan; Vijay S Pande; Ingo Ruczinski; Sebastian Doniach; Kevin W Plaxco
Journal:  Proc Natl Acad Sci U S A       Date:  2004-08-16       Impact factor: 11.205

2.  Pressure denaturation of staphylococcal nuclease studied by neutron small-angle scattering and molecular simulation.

Authors:  Amit Paliwal; Dilipkumar Asthagiri; Dobrin P Bossev; Michael E Paulaitis
Journal:  Biophys J       Date:  2004-09-03       Impact factor: 4.033

3.  Pressure equilibrium and jump study on unfolding of 23-kDa protein from spinach photosystem II.

Authors:  Cui-Yan Tan; Chun-He Xu; Jun Wong; Jian-Ren Shen; Shinsuke Sakuma; Yasusi Yamamoto; Reinhard Lange; Claude Balny; Kang-Cheng Ruan
Journal:  Biophys J       Date:  2004-11-05       Impact factor: 4.033

4.  Cooperative water filling of a nonpolar protein cavity observed by high-pressure crystallography and simulation.

Authors:  Marcus D Collins; Gerhard Hummer; Michael L Quillin; Brian W Matthews; Sol M Gruner
Journal:  Proc Natl Acad Sci U S A       Date:  2005-11-03       Impact factor: 11.205

5.  Pressure-jump-induced kinetics reveals a hydration dependent folding/unfolding mechanism of ribonuclease A.

Authors:  J Font; J Torrent; M Ribó; D V Laurents; C Balny; M Vilanova; R Lange
Journal:  Biophys J       Date:  2006-06-23       Impact factor: 4.033

6.  The contribution of the residues from the main hydrophobic core of ribonuclease A to its pressure-folding transition state.

Authors:  Josep Font; Antoni Benito; Reinhard Lange; Marc Ribó; Maria Vilanova
Journal:  Protein Sci       Date:  2006-04-05       Impact factor: 6.725

Review 7.  Lessons from pressure denaturation of proteins.

Authors:  Julien Roche; Catherine A Royer
Journal:  J R Soc Interface       Date:  2018-10-03       Impact factor: 4.118

8.  Probing fast ribozyme reactions under biological conditions with rapid quench-flow kinetics.

Authors:  Jamie L Bingaman; Kyle J Messina; Philip C Bevilacqua
Journal:  Methods       Date:  2017-03-14       Impact factor: 3.608

9.  Microsecond barrier-limited chain collapse observed by time-resolved FRET and SAXS.

Authors:  Sagar V Kathuria; Can Kayatekin; Raul Barrea; Elena Kondrashkina; Rita Graceffa; Liang Guo; R Paul Nobrega; Srinivas Chakravarthy; C Robert Matthews; Thomas C Irving; Osman Bilsel
Journal:  J Mol Biol       Date:  2014-03-04       Impact factor: 5.469

10.  Advances in turbulent mixing techniques to study microsecond protein folding reactions.

Authors:  Sagar V Kathuria; Alexander Chan; Rita Graceffa; R Paul Nobrega; C Robert Matthews; Thomas C Irving; Blair Perot; Osman Bilsel
Journal:  Biopolymers       Date:  2013-11       Impact factor: 2.505

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