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George Stan

Showing results (1-10 of 33) with videos related to

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The Journal of Physical Chemistry. B|July 5, 2017
Asymmetric Conformational Transitions in AAA+ Biological Nanomachines Modulate Direction-Dependent Substrate Protein Unfolding MechanismsAbdolreza Javidialesaadi, George Stan
Journal of the American Chemical Society|September 7, 2013
Mechanism of transient binding and release of substrate protein during the allosteric cycle of the p97 nanomachineSam Tonddast-Navaei, George Stan
Cell|November 19, 2013
ClpX shifts into high gear to unfold stable proteinsMichael R Maurizi, George Stan
Proteins|December 2, 2009
Versatile substrate protein recognition mechanism of the eukaryotic chaperonin CCTManori Jayasinghe, Cody Tewmey, George Stan
Proceedings of the National Academy of Sciences of the United States of America|January 27, 2011
Unfolding and translocation pathway of substrate protein controlled by structure in repetitive allosteric cycles of the ClpY ATPaseAndrea Kravats, Manori Jayasinghe, George Stan
The Journal of Physical Chemistry. B|January 26, 2019
Role of Diffusion in Unfolding and Translocation of Multidomain Titin I27 Substrates by a Clp ATPase NanomachineAbdolreza Javidialesaadi, Shanice M Flournoy, George Stan
Journal of Molecular Biology|June 22, 2005
Probing the "annealing" mechanism of GroEL minichaperone using molecular dynamics simulationsGeorge Stan, Bernard R Brooks, D Thirumalai
Frontiers in Molecular Biosciences|December 8, 2022
Friends in need: How chaperonins recognize and remodel proteins that require folding assistanceGeorge Stan, George H Lorimer, D Thirumalai
Biochemistry|October 22, 2025
Probing the Gate-Opening Transition in the Bacterial ClpP Peptidase Using Molecular Dynamics Simulations and Machine LearningTharushi Rajaguru, Ashan Dayananda, Hayden Dennison, et al.
Plos Computational Biology|January 7, 2016
Coarse-Grained Simulations of Topology-Dependent Mechanisms of Protein Unfolding and Translocation Mediated by ClpY ATPase NanomachinesAndrea N Kravats, Sam Tonddast-Navaei, George Stan
Pageof 4

Showing results (1-10 of 33) with videos related to

Sort By:
Pageof 4
The Journal of Physical Chemistry. B|July 5, 2017
Asymmetric Conformational Transitions in AAA+ Biological Nanomachines Modulate Direction-Dependent Substrate Protein Unfolding MechanismsAbdolreza Javidialesaadi, George Stan
Journal of the American Chemical Society|September 7, 2013
Mechanism of transient binding and release of substrate protein during the allosteric cycle of the p97 nanomachineSam Tonddast-Navaei, George Stan
Cell|November 19, 2013
ClpX shifts into high gear to unfold stable proteinsMichael R Maurizi, George Stan
Proteins|December 2, 2009
Versatile substrate protein recognition mechanism of the eukaryotic chaperonin CCTManori Jayasinghe, Cody Tewmey, George Stan
Proceedings of the National Academy of Sciences of the United States of America|January 27, 2011
Unfolding and translocation pathway of substrate protein controlled by structure in repetitive allosteric cycles of the ClpY ATPaseAndrea Kravats, Manori Jayasinghe, George Stan
The Journal of Physical Chemistry. B|January 26, 2019
Role of Diffusion in Unfolding and Translocation of Multidomain Titin I27 Substrates by a Clp ATPase NanomachineAbdolreza Javidialesaadi, Shanice M Flournoy, George Stan
Journal of Molecular Biology|June 22, 2005
Probing the "annealing" mechanism of GroEL minichaperone using molecular dynamics simulationsGeorge Stan, Bernard R Brooks, D Thirumalai
Frontiers in Molecular Biosciences|December 8, 2022
Friends in need: How chaperonins recognize and remodel proteins that require folding assistanceGeorge Stan, George H Lorimer, D Thirumalai
Biochemistry|October 22, 2025
Probing the Gate-Opening Transition in the Bacterial ClpP Peptidase Using Molecular Dynamics Simulations and Machine LearningTharushi Rajaguru, Ashan Dayananda, Hayden Dennison, et al.
Plos Computational Biology|January 7, 2016
Coarse-Grained Simulations of Topology-Dependent Mechanisms of Protein Unfolding and Translocation Mediated by ClpY ATPase NanomachinesAndrea N Kravats, Sam Tonddast-Navaei, George Stan
Pageof 4