Emergent Biomolecular Assembly
FOCUS · B06 · ID: 46273
Presentations
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Quinary structure modulates protein sequence stability in vivo
ORAL · Invited
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Publication: Sternke, M., Barrick, D., Gruebele, M.*, Davis, C.M.* "Quinary structure modulates protein sequence stability in vivo," in preparation.
Presenters
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Caitlin Davis
Yale
Authors
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Caitlin Davis
Yale
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Martin Gruebele
University of Illinois at Urbana-Champaign
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Optimizing kinetics of hetero-subunit assembly using differentiable models
ORAL
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Presenters
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Adip Jhaveri
Johns Hopkins University
Authors
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Adip Jhaveri
Johns Hopkins University
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Nature of size fluctuations in filamentous cytoskeletal structures
ORAL
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Presenters
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Aldric Rosario
Brandeis University
Authors
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Aldric Rosario
Brandeis University
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Shane G McInally
Brandeis University
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Bruce L Goode
Brandeis University
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Jane Kondev
Brandeis University, Brandeis Univ
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Predicting Timescales of DNA Mediated Protein Assembly
ORAL
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Presenters
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Mankun Sang
Johns Hopkins University
Authors
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Mankun Sang
Johns Hopkins University
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Margaret E Johnson
Johns Hopkins University
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Active nuclear transport in living cells: dynamics and steady-state profiles of cargo concentrations
ORAL
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Presenters
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Alex S Rautu
Simons Foundation
Authors
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Alex S Rautu
Simons Foundation
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Michael J Shelley
Courant Inst. (NYU), Flatiron Inst. (SF), Flatiron Institute and New York University, Flatiron Institute and Courant Institute, New York University, Flatiron Institute
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Acentrosomal spindles assemble from branching nucleation near chromosomes
ORAL
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Presenters
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Bernardo Gouveia
Princeton University
Authors
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Bernardo Gouveia
Princeton University
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Sagar U Setru
Princeton University
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Joshua W Shaevitz
Princeton University
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Howard A Stone
Princeton, Princeton University
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Sabine Petry
Princeton University
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The roles of stoichiometric crowding and protein-protein interactions in accelerating translation elongation rates in E. coli
ORAL
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Presenters
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Jennifer L Hofmann
Stanford University
Authors
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Jennifer L Hofmann
Stanford University
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Roseanna N Zia
Stanford Univ, Stanford University
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LIM domain proteins localize to strained actin, focal adhesions and adherens junctions in a tension-dependent manner
ORAL
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Publication: Part of this work is published:<br>Winkelman, J. D., Anderson, C. A., Suarez, C., Kovar, D. R., & Gardel, M. L. (2020). Evolutionarily diverse LIM domain-containing proteins bind stressed actin filaments through a conserved mechanism. Proceedings of the National Academy of Sciences, 117(41), 25532-25542.
Presenters
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Shailaja Seetharaman
University of Chicago
Authors
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Shailaja Seetharaman
University of Chicago
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Jonathan Winkelman
University of Chicago
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Yvonne Beckham
University of Chicago
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Margaret Gardel
University of Chicago
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Measuring Weak Protein-Protein Interactions Using a Mechanically Transduced Immunosorbent Assay
ORAL
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Publication: https://elifesciences.org/articles/67525#metrics
Presenters
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Joshua P Steimel
University of the Pacific
Authors
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Joshua P Steimel
University of the Pacific
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Christopher J Petell
UNC
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Joe Harrison
UOP
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Brian Strahl
UNC
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Michael Pappas
UOP
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Evolutionary advantage of a dissociative search mechanism in DNA mismatch repair
ORAL
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Publication: Crocker, K., London, J., Medina, A., Fishel, R., & Bundschuh, R. (2021). Evolutionary advantage of a dissociative search mechanism in DNA mismatch repair. Physical Review E, 103(5), 052404.
Presenters
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Kyle Crocker
University of Chicago
Authors
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Kyle Crocker
University of Chicago
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James London
Ohio State University
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Andres A Medina
Ohio State Univ - Columbus
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Richard Fishel
Ohio State University
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Ralf Bundschuh
Ohio State University, Ohio State Univ - Columbus
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Steps of actin filament branch formation by Arp2/3 complex investigated with coarse-grained molecular dynamics
ORAL
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Presenters
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Shuting Zhang
Lehigh Univ, Lehigh University
Authors
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Dimitrios Vavylonis
Lehigh University
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Shuting Zhang
Lehigh Univ, Lehigh University
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Overlooked transcription factor crosslinking and steric forces can coordinate chromatin and TAD organization
ORAL
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Publication: Yan, W., Ansari, S., Lamson, A., Glaser, M. A., Betterton, M., & Shelley, M. J. (2021). aLENS: towards the cellular-scale simulation of motor-driven cytoskeletal assemblies. arXiv preprint arXiv:2109.08206.
Presenters
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Adam R Lamson
Simons Foundation
Authors
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Adam R Lamson
Simons Foundation
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Wen Yan
Flatiron Institute
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Alex S Rautu
Simons Foundation
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Michael J Shelley
Courant Inst. (NYU), Flatiron Inst. (SF), Flatiron Institute and New York University, Flatiron Institute and Courant Institute, New York University, Flatiron Institute
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Understanding the Unfolding Mechanisms of ??D Crystallin using Molecular Dynamics Simulations
ORAL
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Presenters
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DEEPSHIKHA GHOSH
IIT Gandhinagar
Authors
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DEEPSHIKHA GHOSH
IIT Gandhinagar
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Kandarp Sojitra
Texas A&M University, USA
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Manish Agarwal
Indian Institute of Technology Delhi, IIT Delhi
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Mithun Radhakrishna
Assistant Professor, Indian Institute of technology Gandhinagar, IIT Gandhinagar
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