The protein folding process often proceeds through partially folded transient states. Therefore, a structural understanding of these disordered states is crucial for developing mechanistic models of the folding process. Characterization of unfolded states remains challenging due to their disordered nature, and incorporating multiple methods is necessary. Combining the time-resolved x-ray solution scattering (TRXSS) signal with molecular dynamics (MD), we are able to characterize transient partially folded states of bovine α-lactalbumin, a model system widely used for investigation of molten globule states, during its unfolding triggered by a temperature jump. We track the unfolding process between 20 µs and 70 ms and demonstrate that it passes through three distinct kinetic states. The scattering signals associated with these transient species are then analyzed with TRXSS constrained MD simulations to produce protein structures that are compatible with the input signals. Without utilizing any experimentally extracted kinetic information, the constrained MD simulation successfully drove the protein to an intermediate molten globule state; signals for two later disordered states are refined to terminal unfolded states. From our examination of the structural characteristics of these disordered states, we discuss the implications disordered states have on the folding process, especially on the folding pathway. Finally, we discuss the potential applications and limitations of this method.
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Unfolding bovine α-lactalbumin with T-jump: Characterizing disordered intermediates via time-resolved x-ray solution scattering and molecular dynamics simulations
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14 March 2021
Research Article|
March 08 2021
Unfolding bovine α-lactalbumin with T-jump: Characterizing disordered intermediates via time-resolved x-ray solution scattering and molecular dynamics simulations
Darren J. Hsu
;
Darren J. Hsu
1
Department of Chemistry, Northwestern University
, Evanston, Illinois 60208, USA
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Denis Leshchev
;
Denis Leshchev
1
Department of Chemistry, Northwestern University
, Evanston, Illinois 60208, USA
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Irina Kosheleva
;
Irina Kosheleva
2
Center for Advanced Radiation Sources, The University of Chicago
, Chicago, Illinois 60637, USA
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Kevin L. Kohlstedt
;
Kevin L. Kohlstedt
a)
1
Department of Chemistry, Northwestern University
, Evanston, Illinois 60208, USA
a)Authors to whom correspondence should be addressed: kkohlstedt@northwestern.edu and l-chen@northwestern.edu
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Lin X. Chen
Lin X. Chen
a)
1
Department of Chemistry, Northwestern University
, Evanston, Illinois 60208, USA
3
Chemical Sciences and Engineering Division, Argonne National Laboratory
, Argonne, Illinois 60439, USA
a)Authors to whom correspondence should be addressed: kkohlstedt@northwestern.edu and l-chen@northwestern.edu
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a)Authors to whom correspondence should be addressed: kkohlstedt@northwestern.edu and l-chen@northwestern.edu
Note: This paper is part of the JCP Special Collection in Honor of Women in Chemical Physics and Physical Chemistry.
J. Chem. Phys. 154, 105101 (2021)
Article history
Received:
December 01 2020
Accepted:
February 04 2021
Citation
Darren J. Hsu, Denis Leshchev, Irina Kosheleva, Kevin L. Kohlstedt, Lin X. Chen; Unfolding bovine α-lactalbumin with T-jump: Characterizing disordered intermediates via time-resolved x-ray solution scattering and molecular dynamics simulations. J. Chem. Phys. 14 March 2021; 154 (10): 105101. https://doi.org/10.1063/5.0039194
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