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Publications

January 5, 2025, Filed Under: 2011

Folding of human telomerase RNA pseudoknot using ion-jump and temperature-quench simulations.

Citation:

Biyun, S. ; Cho, S. S. ; Thirumalai, D. Folding of human telomerase RNA pseudoknot using ion-jump and temperature-quench simulations. J Am Chem Soc 133, 20634-43.

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folding-of-human-telomerase-rna-pseudoknot-using-ion-jump-and-temperature-quench-simulations.pdf4.52 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2010

Protein thermodynamics: Are native proteins metastable?

Citation:

Thirumalai, D. ; Reddy, G. Protein thermodynamics: Are native proteins metastable?. Nat Chem 3 910-1.

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protein-thermodynamics-are-native-proteins-metastable.pdf108 KB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 1992

Conformations of a polyelectrolyte chain.

Citation:

Ha, B. Y. ; Thirumalai, D. Conformations of a polyelectrolyte chain. Phys Rev A 46, R3012-R3015.

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conformations-of-polyelectrolyte-chain.pdf689 KB

Last updated on 08/18/2017

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January 3, 2025, Filed Under: 2012, Publications

RNA under tension: Folding Landscapes, Kinetic partitioning Mechanism, and Molecular Tensegrity.

Citation:

Lin, J. – C. ; Hyeon, C. ; Thirumalai, D. RNA under tension: Folding Landscapes, Kinetic partitioning Mechanism, and Molecular Tensegrity. J Phys Chem Lett 3 3616-3625.

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rna-under-tension-folding-landscapes-kinetic-partitioning-mechanism-and-molecular-tensegrity.pdf2.63 MB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Dynamic contrast-enhanced folate-receptor-targeted MR imaging using a Gd-loaded PEG-dendrimer-folate conjugate in a mouse xenograft tumor model.

Citation:

Chen, W. – T. ; Thirumalai, D. ; Shih, T. T. – F. ; Chen, R. – C. ; Tu, S. – Y. ; Lin, C. – I. ; Yang, P. – C. Dynamic contrast-enhanced folate-receptor-targeted MR imaging using a Gd-loaded PEG-dendrimer-folate conjugate in a mouse xenograft tumor model. Mol Imaging Biol 12, 145-54.

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dynamic-contrast-enhanced-folate-receptor-targeted-mr-imaging-using-a-gd-loaded-peg-dendrimer-folate-conjugate-in-a-mouse-xenograft-tumor-model.pdf374 KB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Dry amyloid fibril assembly in a yeast prion peptide is mediated by long-lived structures containing water wires.

Citation:

Reddy, G. ; Straub, J. E. ; Thirumalai, D. Dry amyloid fibril assembly in a yeast prion peptide is mediated by long-lived structures containing water wires. Proc Natl Acad Sci U S A 107, 21459-64.

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dry-amyloid-fibril-assembly-in-a-yeast-prion-peptide-is-mediated-by-long-lived-structures-containing-water-wires.pdf1.56 MB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Myosin VI: how do charged tails exert control?

Citation:

Thirumalai, D. ; Zhang, Z. Myosin VI: how do charged tails exert control?. Structure 18, 1393-4.

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myosin-vi-how-do-charged-tails-exert-control.pdf110 KB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Principles governing oligomer formation in amyloidogenic peptides.

Citation:

Straub, J. E. ; Thirumalai, D. Principles governing oligomer formation in amyloidogenic peptides. Curr Opin Struct Biol 20, 187-95.

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principles-governing-oligomer-formation-in-amyloidogenic-peptides.pdf319 KB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Promoter melting triggered by bacterial RNA polymerase occurs in three steps.

Citation:

Chen, J. ; Darst, S. A. ; Thirumalai, D. Promoter melting triggered by bacterial RNA polymerase occurs in three steps. Proc Natl Acad Sci U S A 107, 12523-8.

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promoter-melting-triggered-by-bacterial-rna-polymerase-occurs-in-three-steps.pdf2.06 MB

Last updated on 08/17/2017

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January 3, 2025, Filed Under: 2010, Publications

Rigor to post-rigor transition in myosin V: link between the dynamics and the supporting architecture.

Citation:

Tehver, R. ; Thirumalai, D. Rigor to post-rigor transition in myosin V: link between the dynamics and the supporting architecture. Structure 18, 471-81.

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rigor-to-post-rigor-transition-in-myosin-v-link-between-the-dynamics-and-the-supporting-architecture.pdf1.52 MB

Last updated on 08/17/2017

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