Alvaro Alonso-Caballero
Affiliations: | 2017 | CIC nanoGUNE | |
2018- | Columbia University, New York, NY |
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Parents
Sign in to add mentorRaul Perez-Jimenez | grad student | 2017 | CIC nanoGUNE |
Julio Fernandez | post-doc | 2018- | Columbia |
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Publications
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Tapia-Rojo R, Alonso-Caballero A, Badilla CL, et al. (2024) Identical Sequences, Different Behaviors: Protein Diversity Captured at the Single-Molecule Level. Biophysical Journal |
Peters DT, Reifs A, Alonso-Caballero A, et al. (2022) Unraveling the molecular determinants of the anti-phagocytic protein cloak of plague bacteria. Plos Pathogens. 18: e1010447 |
Schönfelder J, Alonso-Caballero A, Perez-Jimenez R. (2022) Mechanochemical Evolution of Disulfide Bonds in Proteins. Methods in Molecular Biology (Clifton, N.J.). 2376: 283-300 |
Alonso-Caballero A, Echelman DJ, Tapia-Rojo R, et al. (2020) Protein folding modulates the chemical reactivity of a Gram-positive adhesin. Nature Chemistry |
Tapia-Rojo R, Alonso-Caballero Á, Fernández JM. (2020) Talin folding as the tuning fork of cellular mechanotransduction. Proceedings of the National Academy of Sciences of the United States of America |
Tapia-Rojo R, Alonso-Caballero A, Fernandez JM. (2020) Direct observation of a coil-to-helix contraction triggered by vinculin binding to talin. Science Advances. 6: eaaz4707 |
Corsetti F, Alonso-Caballero A, Poly S, et al. (2020) Entropic bonding of the type 1 pilus from experiment and simulation. Royal Society Open Science. 7: 200183 |
Alonso-Caballero A, Tapia-Rojo R, Badilla CL, et al. (2020) High Force Magnetic Tweezers Reveal That Bacterial Adhesion Pili Act as Megadalton-scale Schock Absorbers Biophysical Journal. 118: 33a-34a |
Rivas-Pardo JA, Badilla CL, Tapia-Rojo R, et al. (2018) Molecular strategy for blocking isopeptide bond formation in nascent pilin proteins. Proceedings of the National Academy of Sciences of the United States of America |
Alonso-Caballero A, Schönfelder J, Poly S, et al. (2018) Mechanical architecture and folding of E. coli type 1 pilus domains. Nature Communications. 9: 2758 |