Edward Eckels
Affiliations: | 2013- | Department of Biological Sc | Columbia University, New York, NY |
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Publications
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Eckels EC, Chaudhuri D, Chakraborty S, et al. (2021) DsbA is a redox-switchable mechanical chaperone. Chemical Science. 12: 11109-11120 |
Alonso-Caballero A, Echelman DJ, Tapia-Rojo R, et al. (2020) Protein folding modulates the chemical reactivity of a Gram-positive adhesin. Nature Chemistry |
Eckels EC, Haldar S, Tapia-Rojo R, et al. (2019) The Mechanical Power of Titin Folding. Cell Reports. 27: 1836-1847.e4 |
Tapia-Rojo R, Eckels EC, Fernández JM. (2019) Ephemeral states in protein folding under force captured with a magnetic tweezers design. Proceedings of the National Academy of Sciences of the United States of America |
Echelman DJ, Alonso A, Haldar S, et al. (2019) Mechanical Forces are a Reactivity Switch for an Adhesin Thioester Bond Biophysical Journal. 116: 544a |
Eckels EC, Tapia-Rojo R, Rivas-Pardo JA, et al. (2018) The Work of Titin Protein Folding as a Major Driver in Muscle Contraction. Annual Review of Physiology. 80: 327-351 |
Haldar S, Tapia-Rojo R, Eckels EC, et al. (2017) Trigger factor chaperone acts as a mechanical foldase. Nature Communications. 8: 668 |
Valle-Orero J, Tapia-Rojo R, Eckels EC, et al. (2017) Proteins Breaking Bad: A Free Energy Perspective. The Journal of Physical Chemistry Letters |
Andres Rivas-Pardo J, Mártonfalvi Z, Manteca A, et al. (2017) A Multi-Tool Mouse Model to Study the Elasticity of Native Titin Biophysical Journal. 112: 167a |
Rivas Pardo JA, Eckels E, Valle-Orero J, et al. (2017) Disulfide Bonding in the Contractile Work of Titin Biophysical Journal. 112: 456a |