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PMID: 7512348 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Coupling of CFTR Cl- channel gating to an ATP hydrolysis cycle.

Neuron ·Vol. 12 ·No. 3 ·1994-03-00 ·Pages 473-82

Baukrowitz T, Hwang TC, Nairn AC, Gadsby DC

Abstract

For cystic fibrosis transmembrane conductance regulator (CFTR) Cl- channels to open, they must be phosphorylated by protein kinase A and then exposed to a hydrolyzable nucleoside triphosphate, such as ATP. To test whether channel opening is linked to ATP hydrolysis, we applied VO4 and BeF3 to CFTR channels in inside-out patches excised from cardiac myocytes. These inorganic phosphate analogs interrupt ATP hydrolysis cycles by binding tightly in place of the released hydrolysis product, inorganic phosphate. The analogs acted only on CFTR channels opened by ATP and locked them open, increasing their mean open time by 2-3 orders of magnitude. These findings establish that opening and closing of CFTR channels are coupled to an ATP hydrolysis cycle.

MeSH Terms
Adenosine Triphosphate/metabolism Animals Beryllium/pharmacology Chloride Channels/drug effects,metabolism Cystic Fibrosis Transmembrane Conductance Regulator Female Fluorides/pharmacology Guinea Pigs Hydrolysis Ion Channel Gating Male Membrane Proteins/metabolism Myocardium/cytology,metabolism Sarcolemma/metabolism Vanadates/pharmacology
Chemicals
Chloride Channels Membrane Proteins Cystic Fibrosis Transmembrane Conductance Regulator Vanadates beryllium fluoride Adenosine Triphosphate Beryllium Fluorides
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Baukrowitz T
Laboratory of Cardiac/Membrane Physiology, Rockefeller University, New York, New York 10021.
Hwang T C
Nairn A C
Gadsby D C
Article Info
Journal
Neuron
Abbr.
Neuron
ISSN
0896-6273
Published
1994-03-00
Pages
473-82
Language
English
Region
United States
NLM ID
8809320
Subset
IM
Grants
NHLBI NIH HHS · HL49907 · United States
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