Biomedical Engineering Reference
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170. Linsdell P (2006) Mechanism of chloride permeation in the cystic fibrosis transmembrane
conductance regulator chloride channel. Exp Physiol 91:123-129
171. McDonough S, Davidson N, Lester HA et al (1994) Novel pore-lining residues in CFTR that
govern permeation and open-channel block. Neuron 13:623-634
172. Linsdell P, Hanrahan JW (1996) Flickery block of single CFTR chloride channels by
intracellular anions and osmolytes. Am J Physiol Cell Physiol 271:C628-C634
173. Sheppard DN, Robinson KA (1997) Mechanism of glibenclamide inhibition of cystic fibrosis
transmembrane conductance regulator Cl - channels expressed in a murine cell line. J Physiol
(Lond) 503:333-346
174. Linsdell P (2005) Location of a common inhibitor binding site in the cytoplasmic vestibule
of the cystic fibrosis transmembrane conductance regulator chloride channel pore. J Biol
Chem 280:8945-8950
175. Linsdell P (2000) Inhibition of cystic fibrosis transmembrane conductance regulator chloride
channel currents by arachidonic acid. Can J Physiol Pharm 78:490-499
176. Zhou JJ, Linsdell P (2007) Molecular mechanism of arachidonic acid inhibition of the CFTR
chloride channel. Eur J Pharmacol 563:88-91
177. St. Aubin CN, Linsdell P (2006) Positive charges at the intracellular mouth of the pore
regulate anion conduction in the CFTR chloride channel. J Gen Physiol 128:535-545
178. Ishihara H, Welsh MJ (1997) Block by MOPS reveals a conformation change in the CFTR
pore produced by ATP hydrolysis. Am J Physiol Cell Physiol 273:C1278-C1289
179. Yamamoto D, Suzuki N (1987) Blockage of chloride channels by HEPES buffer. Proc R Soc
Lond B Bio Sci 23:93-100
180. K
urz L, Wagner S, George AL et al (1997) Probing the major skeletal muscle chloride
channel with Zn 2+ and other sulfhydryl-reactive compounds. Pfl
ugers Arch 433:357-363
urz LL, Klink H, Jacob I et al (1999) Identification of three cysteines as targets for the Zn 2+
blockade of the human skeletal muscle chloride channel. J Biol Chem 274:11687-11692
182. Horenstein J, Akabas MH (1998) Location of a high affinity Zn 2+ binding site in the channel
of alpha1beta1 gamma-aminobutyric acid A receptors. Mol Pharmacol 53:870-877
183. Wooltorton JR, McDonald BJ, Moss SJ et al (1997) Identification of a Zn 2+ binding site on
the murine GABA A receptor complex: dependence on the second transmembrane domain of
beta subunits. J Physiol (Lond) 505:633-640
184. Blaisdell CJ, Edmonds RD, Wang XT et al (2000) pH-regulated chloride secretion in fetal
lung epithelia. Am J Physiol Lung Cell Mol Physiol 278:L1248-L1255
185. Chesnoy-Marchais D, Fritsch J (1994) Activation of hyperpolarization and atypical
osmosensitivity of a Cl - current in rat osteoblastic cells. J Membr Biol 140:173-188
186. Clark S, Jordt SE, Jentsch TJ et al (1998) Characterization of the hyperpolarization- activated
chloride current in dissociated rat sympathetic neurons. J Physiol (Lond) 506:665-678
187. White MM, Aylwin M (1990) Niflumic and flufenamic acids are potent reversible blockers
of Ca 2+ -activated Cl channels in Xenopus oocytes. Mol Pharmacol 37:720-724
188. Tulk BM, Edwards JC (1998) Ncc27, a homolog of intracellular Cl channel p64, is
expressed in brush border of renal proximal tubule. Am J Physiol Renal Physiol 274:
F1140-F1149
189. Geck P, Pietrzyk C, Burckhardt BC et al (1980) Electrically silent cotransport of Na + ,K + and
Cl in ehrlich cells. Biochim Biophys Acta 600:432-447
190. Ellory JC, Dunham PB, Logue PJ et al (1982) Anion dependent cation transport
181. K
in
erythrocytes. Philos Trans R Soc Lond B Biol Sci 299:483-495
191. Greger R (1985) Ion transport mechanisms in thick ascending limb of Henle's loop of
mammalian nephron. Physiol Rev 65:760-797
192. Passow H (1986) Molecular aspects of band 3 protein-mediated anion transport across the
red blood cell membrane. Rev Physiol Biochem Pharmacol 103:61-203
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