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Publications

January 5, 2025, Filed Under: 2017

Kinematics of the lever arm swing in myosin VI

Citation:

Mugnai, M. L. ; Thirumalai, D. Kinematics of the lever arm swing in myosin VI. Proc Natl Acad Sci U S A 114, E4389–E4398.

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kinematics-of-the-lever-arm-swing-in-myosin_vi.pdf34.97 MB

Last updated on 08/17/2017

January 5, 2025, Filed Under: 2017

Optimal information transfer in enzymatic networks: A field theoretic formulation

Citation:

Samanta, H. S. ; Hinczewski, M. ; Thirumalai, D. Optimal information transfer in enzymatic networks: A field theoretic formulation. Phys Rev E 96, 012406.

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optimal-information-transfer-in-enzymatic-networks-a-field-theoretic-formulation.pdf2.28 MB

Last updated on 08/17/2017

January 5, 2025, Filed Under: 2017

Protein collapse is encoded in the folded state architecture

Citation:

Samanta, H. S. ; Zhuravlev, P. I. ; Hinczewski, M. ; Hori, N. ; Chakrabarti, S. ; Thirumalai, D. Protein collapse is encoded in the folded state architecture. Soft Matter 13, 3622-3638.

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protein-collapse-is-encoded-in-the-folded-state-architecture.pdf5.25 MB

Last updated on 08/17/2017

January 5, 2025, Filed Under: 2016

Discrete Step Sizes of Molecular Motors Lead to Bimodal Non-Gaussian Velocity Distributions under Force

Citation:

Vu, H. T. ; Chakrabarti, S. ; Hinczewski, M. ; Thirumalai, D. Discrete Step Sizes of Molecular Motors Lead to Bimodal Non-Gaussian Velocity Distributions under Force. Phys. Rev. Lett. 117, 078101.

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discrete-step-sizes-of-molecular-motors-lead-to-bimodal-non-gaussian-velocity-distributions-under-force.pdf336 KB

Last updated on 08/17/2017

January 5, 2025, Filed Under: 2016

Directly measuring single-molecule heterogeneity using force spectroscopy.

Citation:

Hinczewski, M. ; Hyeon, C. ; Thirumalai, D. Directly measuring single-molecule heterogeneity using force spectroscopy. Proc Natl Acad Sci U S A 113, E3852-61.

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directly-measuring-single-molecule-heterogeneity-using-force-spectroscopy.pdf1.25 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2016

Folding PDZ2 Domain Using the Molecular Transfer Model.

Citation:

Liu, Z. ; Reddy, G. ; Thirumalai, D. Folding PDZ2 Domain Using the Molecular Transfer Model. J Phys Chem B.

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folding-pdz2-domain-using-the-molecular-transfer-model.pdf7.23 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2016

Force-dependent switch in protein unfolding pathways and transition-state movements.

Citation:

Zhuravlev, P. I. ; Hinczewski, M. ; Chakrabarti, S. ; Marqusee, S. ; Thirumalai, D. Force-dependent switch in protein unfolding pathways and transition-state movements. Proc Natl Acad Sci U S A 113, E715-24.

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force-dependent-switch-in-protein-unfolding-pathways-and-transition-state-movements.pdf1.52 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2016

Importance of Hydrodynamic Interactions in the Stepping Kinetics of Kinesin.

Citation:

Goldtzvik, Y. ; Zhang, Z. ; Thirumalai, D. Importance of Hydrodynamic Interactions in the Stepping Kinetics of Kinesin. J Phys Chem B 120, 2071-5.

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importance-of-hydrodynamic-interactions-in-the-stepping-kinetics-of-kinesin.pdf1.58 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2016

Noise Control in Gene Regulatory Networks with Negative Feedback.

Citation:

Hinczewski, M. ; Thirumalai, D. Noise Control in Gene Regulatory Networks with Negative Feedback. J Phys Chem B 120, 6166-77.

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noise-control-in-gene-regulatory-networks-with-negative-feedback.pdf1.82 MB

Last updated on 08/17/2017

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January 5, 2025, Filed Under: 2017

Phenomenological and microscopic theories for catch bonds.

Citation:

Chakrabarti, S. ; Hinczewski, M. ; Thirumalai, D. Phenomenological and microscopic theories for catch bonds. J Struct Biol.

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phenomenological_and_microscopic_theories_for_catch_bonds.pdf1.44 MB

Last updated on 08/17/2017

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