01.01.2015 Views

Page 1 of 2 123bio.net - Revues - La mucoviscidose 3/27/2009 http ...

Page 1 of 2 123bio.net - Revues - La mucoviscidose 3/27/2009 http ...

Page 1 of 2 123bio.net - Revues - La mucoviscidose 3/27/2009 http ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

<strong>123bio</strong>.<strong>net</strong> - <strong>Revues</strong> - <strong>La</strong> <strong>mucoviscidose</strong><br />

<strong>http</strong>://www.<strong>123bio</strong>.<strong>net</strong>/revues/vchappe/biblio.html<br />

<strong>Page</strong> 3 <strong>of</strong> 9<br />

3/<strong>27</strong>/<strong>2009</strong><br />

Cooper DMF, Mons N & Karpen JW (1995). Adenylyl cyclases and the interaction between calcium and cAMP<br />

signalling. Nature 374:421-424.<br />

Copello J, Heming TA, Segal Y & Reuss L (1993). cAMP-activated apical membrane chloride channels in Necturus<br />

galbladder epithelium. J Gen Physiol 102:177-199.<br />

Cotten JF & Welsh MJ (1997). Covalent modification <strong>of</strong> the regulatory domain irreversibly stimulates cystic fibrosis<br />

transmembrane conductance regulator. J Biol Chem <strong>27</strong>2:25617-25622.<br />

Croop JM (1998). Evolutionary relationships among ABC transporters. Methods in Enzymol 292:101-117.<br />

Crawford IT & Maloney PC (1998). Identification <strong>of</strong> Cystic Fibrosis Transmembrane Conductance Regulator in renal<br />

endosomes. Methods in Enzymol 292:652-663.<br />

Daaka Y, Luttrell LM & Lefkowitz RJ (1997). Switching <strong>of</strong> the coupling <strong>of</strong> beta2-adrenergic receptor to different G<br />

proteins by protein kinase A. Nature 390: 88-91.<br />

Dawson DC, Smith SS & Mansoura MK (1999). CFTR: mechanism <strong>of</strong> anion conduction. Physiol Rev 79:S47-S75.<br />

Demolombe S, Baró I, <strong>La</strong>urent M, Hongre AS, Pavirani A & Escande D (1994). Abnormal subcellular localization <strong>of</strong><br />

mutated CFTR protein in cystic fibrosis epithelial cell line. Eur J Cell Biol 65:214-9.<br />

Devidas S & Guggino WB (1997). CFTR: domains, structure, and function. J Bioenerg Biomembr 29:443-451.<br />

Devor DC, Singh AK, Bridges RJ & Frizzell RA (1997). psoralens: novel modulators <strong>of</strong> Cl- secretion. Am J Physiol<br />

<strong>27</strong>2:C976-C988.<br />

Dulhanty AM & Riordan JR (1994). A two-domain model for the R domain <strong>of</strong> the cystic fibrosis transmembrane<br />

conductance regulator based on sequence similarities. FEBS Letters 343: 109-14.<br />

Dunn KW, Park J, Semrad CE, Gelman DL, Shevell T & McGraw TE (1994). Regulation <strong>of</strong> endocytic trafficking and<br />

acidification are independent <strong>of</strong> the cystic fibrosis transmembrane conductance regulator. J Biol Chem 269:5336-<br />

5345.<br />

Egan ME, Schwiebert EM & Guggino WB (1995). Differential expression <strong>of</strong> ORCC and CFTR induced by low<br />

temperature in CF airway epithelial cells. Am J Physiol 268:C243-51.<br />

Eidelman O, Guay-Broder CG, Van Galen PJM, Jacobson KA, Fox C, Turner RJ, Cabantchik ZI & Pollard HB<br />

(1992). A1 adenosine-receptor antagonists activate chloride efflux from cystic fibrosis cells. Proc Natl Acad Sci USA<br />

89:5562-5566.<br />

Ekokoski E & Törnquist K (1994). Effects <strong>of</strong> 5,8,11,14-eicosatetranoic acid on thapsigargin-induced calcium entry,<br />

and intracellular pH in thyroid FRTL-5 cells. Biochem Biophys Acta 1223:<strong>27</strong>4-<strong>27</strong>8.<br />

Elgavish A (1991). High intracellular pH in CFPAC: a pancreas cell line from a patient with cystic fibrosis is lowered<br />

by retrovirus-mediated CFTR gene transfer. Biochem Biophys Res Comm 180:342-348.<br />

Fanen P, <strong>La</strong>barthe R, Garnier F, Benharouga M, Goossens M & Edelman A (1997). Cystic fibrosis phenotype<br />

associated with pancreatic insufficiency does not always reflect the cAMP-dependent chloride conductive pathway<br />

defect. Analysis <strong>of</strong> C225R-CFTR and R1066C-CFTR. J Biol Chem <strong>27</strong>2:30563-6.<br />

Federman AD, Conklin BR, Schrader KA, Reed RR & Bourne HR (1992). Hormonal stimulation <strong>of</strong> adenylyl cyclase<br />

through G-protein beta gamma subunits. Nature 356:159-161.<br />

Foskett JK (1998). CLC and CFTR chloride channel gating. Annu Rev Physiol 60:689-717.<br />

Freissmoth M, Waldoher M, B<strong>of</strong>ill-Cardona E & Nan<strong>of</strong>f C (1999).G proteins antagonists. Trends Pharmacol Sci. 20:<br />

237-245.<br />

Frizzell RA (1995). Functions <strong>of</strong> the cystic fibrosis transmembrane conductance regulator protein. Am J Respir Crit<br />

Care Med 151:554-558.<br />

Frizzell RA, Halm DR, Rechkemmer G & Shoemaker RL (1986). Chloride channel regulation in secretory epithelia.<br />

Fed Proc 45:<strong>27</strong><strong>27</strong>-31.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!