Uncoupling and Turnover in a Cl−/H+ Exchange Transporter
暂无分享,去创建一个
Chen Xu | Carole Williams | Christopher Miller | M. Walden | A. Accardi | Christopher Miller | Carole Williams | Alessio Accardi | Michael Walden | Fang Wu | Fang Wu | Chen Xu
[1] J. Mindell,et al. A decade of CLC chloride channels: structure, mechanism, and many unsettled questions. , 2000, Annual review of biophysics and biomolecular structure.
[2] R. Dutzler,et al. Ion‐binding properties of the ClC chloride selectivity filter , 2006, The EMBO journal.
[3] D. Monachello,et al. The nitrate/proton antiporter AtCLCa mediates nitrate accumulation in plant vacuoles , 2006, Nature.
[4] Christopher Miller,et al. Uncoupling of a CLC Cl-/H+ exchange transporter by polyatomic anions. , 2006, Journal of molecular biology.
[5] Michael Pusch,et al. Chloride/proton antiporter activity of mammalian CLC proteins ClC-4 and ClC-5 , 2005, Nature.
[6] Carole Williams,et al. Synergism between halide binding and proton transport in a CLC-type exchanger. , 2006, Journal of molecular biology.
[7] A. Zamyatnin,et al. Protein volume in solution. , 1972, Progress in biophysics and molecular biology.
[8] Roderick MacKinnon,et al. Gating the Selectivity Filter in ClC Chloride Channels , 2003, Science.
[9] Merritt Maduke,et al. High-Level Expression, Functional Reconstitution, and Quaternary Structure of a Prokaryotic Clc-Type Chloride Channel , 1999, The Journal of general physiology.
[10] E. A. Richard,et al. Steady-state coupling of ion-channel conformations to a transmembrane ion gradient. , 1990, Science.
[11] Michael Pusch,et al. Proton Sensing of CLC-0 Mutant E166D , 2006, The Journal of general physiology.
[12] R. Dutzler,et al. X-ray structure of a ClC chloride channel at 3.0 Å reveals the molecular basis of anion selectivity , 2002, Nature.
[13] Christopher Miller,et al. ClC chloride channels viewed through a transporter lens , 2006, Nature.
[14] Carole Williams,et al. Separate Ion Pathways in a Cl−/H+ Exchanger , 2005, The Journal of general physiology.
[15] B. Kanner,et al. The dual-function glutamate transporters: structure and molecular characterisation of the substrate-binding sites. , 2002, Biochimica et biophysica acta.
[16] Carole Williams,et al. Ionic Currents Mediated by a Prokaryotic Homologue of CLC Cl− Channels , 2004, The Journal of general physiology.
[17] Christopher Miller,et al. A biological role for prokaryotic ClC chloride channels , 2002, Nature.
[18] T. Jentsch,et al. CLC chloride channels and transporters , 2005, Current Opinion in Neurobiology.
[19] Thomas J. Jentsch,et al. Gating of the voltage-dependent chloride channel CIC-0 by the permeant anion , 1995, Nature.
[20] C. Miller,et al. Nonequilibrium gating and voltage dependence of the ClC-0 Cl- channel , 1996, The Journal of general physiology.
[21] Christopher Miller,et al. Secondary active transport mediated by a prokaryotic homologue of ClC Cl- channels , 2004, Nature.
[22] T. Jentsch,et al. Voltage-dependent electrogenic chloride/proton exchange by endosomal CLC proteins , 2005, Nature.
[23] Mei-fang Chen,et al. Side-chain Charge Effects and Conductance Determinants in the Pore of ClC-0 Chloride Channels , 2003, The Journal of general physiology.
[24] H. Apell,et al. Quantitative analysis of pump-mediated fluxes in reconstituted lipid vesicles , 1986 .
[25] Christopher Miller,et al. Purification, reconstitution, and subunit composition of a voltage-gated chloride channel from Torpedo electroplax. , 1994, Biochemistry.
[26] M. J. Lemieux,et al. The structural basis of substrate translocation by the Escherichia coli glycerol-3-phosphate transporter: a member of the major facilitator superfamily. , 2004, Current opinion in structural biology.
[27] T. Jentsch,et al. Physiological functions of CLC Cl- channels gleaned from human genetic disease and mouse models. , 2005, Annual review of physiology.
[28] R. MacKinnon,et al. Functional stoichiometry of Shaker potassium channel inactivation. , 1993, Science.
[29] Michael Pusch,et al. Conformational Changes in the Pore of CLC-0 , 2003, The Journal of general physiology.