Francesco Tombola
Affiliations: | University of California, Berkeley, Berkeley, CA, United States |
Area:
Ion channelsGoogle:
"Francesco Tombola"Mean distance: 14.39 (cluster 6) | S | N | B | C | P |
Children
Sign in to add traineeJacob Y. Liu | research assistant | 2021- | UC Irvine |
Medha M. Pathak | research scientist | 2011- | UC Irvine |
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Publications
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Zhao C, Webster PD, De Angeli A, et al. (2023) Mechanically-primed voltage-gated proton channels from angiosperm plants. Nature Communications. 14: 7515 |
Noh S, Tombola F, Burke PJ. (2023) Nanowire Biosensors with Olfactory Proteins: Towards a genuine electronic nose with single molecule sensitivity and high selectivity. Nanotechnology |
Zhao C, Hong L, Riahi S, et al. (2021) A novel Hv1 inhibitor reveals a new mechanism of inhibition of a voltage-sensing domain. The Journal of General Physiology. 153 |
Zhao C, Hong L, Galpin JD, et al. (2021) HIFs: New arginine mimic inhibitors of the Hv1 channel with improved VSD-ligand interactions. The Journal of General Physiology. 153 |
Zhao C, Tombola F. (2021) Voltage-gated proton channels from fungi highlight role of peripheral regions in channel activation. Communications Biology. 4: 261 |
Lim VT, Freites JA, Tombola F, et al. (2020) Thermodynamics and Mechanism of the Membrane Permeation of Hv1 Channel Blockers. The Journal of Membrane Biology |
Lim VT, Geragotelis AD, Lim NM, et al. (2020) Insights on small molecule binding to the Hv1 proton channel from free energy calculations with molecular dynamics simulations. Scientific Reports. 10: 13587 |
Lim VT, Geragotelis AD, Lim NM, et al. (2020) Insights on small molecule binding to the Hv1 proton channel from free energy calculations with molecular dynamics simulations. Scientific Reports. 10: 13587 |
Geragotelis AD, Wood ML, Göddeke H, et al. (2020) Voltage-dependent structural models of the human Hv1 proton channel from long-timescale molecular dynamics simulations. Proceedings of the National Academy of Sciences of the United States of America |
Zhao C, Hong L, Riahi S, et al. (2020) Rationally Designed Proton Channel Inhibitors Reveal a Druggable Pocket in a Voltage-sensing Domain Biophysical Journal. 118: 111a |