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Neuron|February 8, 2005
Voltage-sensing arginines in a potassium channel permeate and occlude cation-selective poresFrancesco Tombola, Medha M Pathak, Ehud Y Isacoff
Annual Review of Cell and Developmental Biology|May 18, 2006
How does voltage open an ion channel?Francesco Tombola, Medha M Pathak, Ehud Y Isacoff
Neuron|December 13, 2005
How far will you go to sense voltage?Francesco Tombola, Medha M Pathak, Ehud Y Isacoff
Nature|December 26, 2006
The twisted ion-permeation pathway of a resting voltage-sensing domainFrancesco Tombola, Medha M Pathak, Pau Gorostiza, et al.
Neuron|October 9, 2007
Closing in on the resting state of the Shaker K(+) channelMedha M Pathak, Vladimir Yarov-Yarovoy, Gautam Agarwal, et al.
Neuron|May 24, 2008
The voltage-gated proton channel Hv1 has two pores, each controlled by one voltage sensorFrancesco Tombola, Maximilian H Ulbrich, Ehud Y Isacoff
The Journal of Physiology|November 17, 2009
Architecture and gating of Hv1 proton channelsFrancesco Tombola, Maximilian H Ulbrich, Ehud Y Isacoff
Nature Structural & Molecular Biology|December 22, 2009
The opening of the two pores of the Hv1 voltage-gated proton channel is tuned by cooperativityFrancesco Tombola, Maximilian H Ulbrich, Susy C Kohout, et al.
IEEE Transactions on Nanobioscience|January 26, 2006
Molecular handles for the mechanical manipulation of single-membrane proteins in living cellsPau Gorostiza, Francesco Tombola, Albert Verdaguer, et al.
Neuron|January 29, 2013
Voltage-sensing domain of voltage-gated proton channel Hv1 shares mechanism of block with pore domainsLiang Hong, Medha M Pathak, Iris H Kim, et al.
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