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1999

January 2, 2025, Filed Under: 1999, Publications

Deciphering the timescales and mechanisms of protein folding using minimal off-lattice models.

Citation:

Thirumalai, D. ; Klimov, D. K. Deciphering the timescales and mechanisms of protein folding using minimal off-lattice models. Curr Opin Struct Biol 9 197-207.

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deciphering-the-timescales-and-mechanisms-of-protein-folding-using-minimal-off-lattice-models.pdf1.38 MB

Last updated on 01/03/2018

  • PubMed
  • DOI

January 2, 2025, Filed Under: 1999, Publications

Exploring the kinetic requirements for enhancement of protein folding rates in the GroEL cavity.

Citation:

Betancourt, M. R. ; Thirumalai, D. Exploring the kinetic requirements for enhancement of protein folding rates in the GroEL cavity. J Mol Biol 287, 627-44.

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exploring-the-kinetic-requirements-for-enhancement-of-protein-folding-rates-in-the-groel-cavity.pdf572 KB

Last updated on 01/03/2018

  • PubMed
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January 2, 2025, Filed Under: 1999, Publications

Magnesium-dependent folding of self-splicing RNA: exploring the link between cooperativity, thermodynamics, and kinetics.

Citation:

Pan, J. ; Thirumalai, D. ; Woodson, S. A. Magnesium-dependent folding of self-splicing RNA: exploring the link between cooperativity, thermodynamics, and kinetics. Proc Natl Acad Sci U S A 96, 6149-54.

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magnesium-dependent-folding-of-self-splicing-rna-exploring-the-link-between-cooperativity-thermodynamics-and-kinetics.pdf217 KB

Last updated on 01/03/2018

  • PubMed

January 2, 2025, Filed Under: 1999, Publications

Pair potentials for protein folding: choice of reference states and sensitivity of predicted native states to variations in the interaction schemes.

Citation:

Betancourt, M. R. ; Thirumalai, D. Pair potentials for protein folding: choice of reference states and sensitivity of predicted native states to variations in the interaction schemes. Protein Sci 8 361-9.

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pair-potentials-for-protein-folding-choice-of-reference-states-and-sensitivity-of_predicted-motive-states-to-variations-in-the-interaction-schemes.pdf360 KB

Last updated on 08/18/2017

  • PubMed
  • DOI

January 2, 2025, Filed Under: 1999, Publications

Stretching single-domain proteins: phase diagram and kinetics of force-induced unfolding.

Citation:

Klimov, D. K. ; Thirumalai, D. Stretching single-domain proteins: phase diagram and kinetics of force-induced unfolding. Proc Natl Acad Sci U S A 96, 6166-70.

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stretching-single-domain-proteins-phase-diagram-and-kinetics-of-force-induced-unfolding.pdf195 KB

Last updated on 01/03/2018

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