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2004

Journal Article

Ligand-gated ion channels: Mechanisms underlying ion selectivity

Keramidas, Angelo, Moorhouse, Andrew J., Schofield, Peter R. and Barry, Peter H. (2004). Ligand-gated ion channels: Mechanisms underlying ion selectivity. Progress in Biophysics and Molecular Biology, 86 (2), 161-204. doi: 10.1016/j.pbiomolbio.2003.09.002

Ligand-gated ion channels: Mechanisms underlying ion selectivity

2003

Journal Article

The contribution of proline 250 (P-2’) to pore diameter and ion selectivity in the human glycine receptor channel

Lee, David J.-S., Keramidas, Angelo, Moorhouse, Andrew J., Schofield, Peter R. and Barry, Peter H. (2003). The contribution of proline 250 (P-2’) to pore diameter and ion selectivity in the human glycine receptor channel. Neuroscience Letters, 351 (3), 196-200. doi: 10.1016/S0304-3940(03)00977-7

The contribution of proline 250 (P-2’) to pore diameter and ion selectivity in the human glycine receptor channel

2003

Journal Article

The contribution of proline 250 (P-2 ') to pore diameter and ion selectivity in the human glycine receptor channel

Lee, DJS, Keramidas, A, Moorhouse, AJ, Schofield, PR and Barry, PH (2003). The contribution of proline 250 (P-2 ') to pore diameter and ion selectivity in the human glycine receptor channel. Neuroscience Letters, 351 (3), 196-200. doi: 10.1016/S0304-3940(03)00977-7

The contribution of proline 250 (P-2 ') to pore diameter and ion selectivity in the human glycine receptor channel

2002

Journal Article

Cation-selective mutations in the M2 domain of the inhibitory glycine receptor channel reveal determinants of ion-charge selectivity

Keramidas, Angelo, Moorhouse, Andrew J., Pierce, Kerrie D. and Schofield, Peter R. (2002). Cation-selective mutations in the M2 domain of the inhibitory glycine receptor channel reveal determinants of ion-charge selectivity. Journal of General Physiology, 119 (5), 393-410. doi: 10.1085/jgp.20028552

Cation-selective mutations in the M2 domain of the inhibitory glycine receptor channel reveal determinants of ion-charge selectivity

2002

Journal Article

Single channel analysis of conductance and rectification in cation-selective, mutant glycine receptor channels

Moorhouse, Andrew J., Keramidas, Angelo, Zaykin, Andrey, Schofield, Peter R. and Barry, Peter H. (2002). Single channel analysis of conductance and rectification in cation-selective, mutant glycine receptor channels. Journal of General Physiology, 119 (5), 411-425. doi: 10.1085/jgp.20028553

Single channel analysis of conductance and rectification in cation-selective, mutant glycine receptor channels

2000

Journal Article

M2 pore mutations convert the glycine receptor channel from being anion- to cation-selective

Keramidas, A, Moorhouse, AJ, French, CR, Schofield, PR and Barry, PH (2000). M2 pore mutations convert the glycine receptor channel from being anion- to cation-selective. Biophysical Journal, 79 (1), 247-259. doi: 10.1016/S0006-3495(00)76287-4

M2 pore mutations convert the glycine receptor channel from being anion- to cation-selective

1999

Journal Article

Measurement of the limiting equivalent conductivities and mobilities of the most prevalent ionic species of EGTA (EGTA2- and EGTA3-) for use in electrophysiological experiments

Keramidas, Angelo , Barry, Peter H., Moorhouse, Andrew and Kuhlmann, Levin (1999). Measurement of the limiting equivalent conductivities and mobilities of the most prevalent ionic species of EGTA (EGTA2- and EGTA3-) for use in electrophysiological experiments. Journal of Neuroscience Methods, 89 (1), 41-47. doi: 10.1016/S0165-0270(99)00036-9

Measurement of the limiting equivalent conductivities and mobilities of the most prevalent ionic species of EGTA (EGTA2- and EGTA3-) for use in electrophysiological experiments