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PMID: 10488073 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Development of substituted Benzo[c]quinolizinium compounds as novel activators of the cystic fibrosis chloride channel.

The Journal of biological chemistry ·Vol. 274 ·No. 39 ·1999-09-24 ·Pages 27415-25

Becq F, Mettey Y, Gray MA, Galietta LJ, Dormer RL, Merten M, Métayé T, Chappe V, Marvingt-Mounir C, Zegarra-Moran O, Tarran R, Bulteau L, Dérand R, Pereira MM, McPherson MA, Rogier C, Joffre M, Argent BE, Sarrouilhe D, Kammouni W, Figarella C, Verrier B, Gola M, Vierfond JM

Abstract

Chloride channels play an important role in the physiology and pathophysiology of epithelia, but their pharmacology is still poorly developed. We have chemically synthesized a series of substituted benzo[c]quinolizinium (MPB) compounds. Among them, 6-hydroxy-7-chlorobenzo[c]quinolizinium (MPB-27) and 6-hydroxy-10-chlorobenzo[c]quinolizinium (MPB-07), which we show to be potent and selective activators of the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel. We examined the effect of MPB compounds on the activity of CFTR channels in a variety of established epithelial and nonepithelial cell systems. Using the iodide efflux technique, we show that MPB compounds activate CFTR chloride channels in Chinese hamster ovary (CHO) cells stably expressing CFTR but not in CHO cells lacking CFTR. Single and whole cell patch clamp recordings from CHO cells confirm that CFTR is the only channel activated by the drugs. Ussing chamber experiments reveal that the apical addition of MPB to human nasal epithelial cells produces a large increase of the short circuit current. This current can be totally inhibited by glibenclamide. Whole cell experiments performed on native respiratory cells isolated from wild type and CF null mice also show that MPB compounds specifically activate CFTR channels. The activation of CFTR by MPB compounds was glibenclamide-sensitive and 4, 4'-diisothiocyanostilbene-2,2'-disulfonic acid-insensitive. In the human tracheal gland cell line MM39, MPB drugs activate CFTR channels and stimulate the secretion of the antibacterial secretory leukoproteinase inhibitor. In submandibular acinar cells, MPB compounds slightly stimulate CFTR-mediated submandibular mucin secretion without changing intracellular cAMP and ATP levels. Similarly, in CHO cells MPB compounds have no effect on the intracellular levels of cAMP and ATP or on the activity of various protein phosphatases (PP1, PP2A, PP2C, or alkaline phosphatase). Our results provide evidence that substituted benzo[c]quinolizinium compounds are a novel family of activators of CFTR and of CFTR-mediated protein secretion and therefore represent a new tool to study CFTR-mediated chloride and secretory functions in epithelial tissues.

MeSH Terms
Animals CHO Cells Cilia/drug effects,physiology Colforsin/pharmacology Cricetinae Cystic Fibrosis Transmembrane Conductance Regulator/deficiency,drug effects,physiology Drug Design Female Glyburide/pharmacology Humans Male Membrane Potentials/drug effects Mice Mice, Inbred BALB C Mice, Knockout Molecular Structure Nasal Mucosa/drug effects,physiology Patch-Clamp Techniques Quinolines/chemical synthesis,chemistry,pharmacology Quinolizines/chemical synthesis,chemistry,pharmacology Recombinant Proteins/drug effects,metabolism Structure-Activity Relationship Transfection
Chemicals
CFTR protein, human Quinolines Quinolizines Recombinant Proteins Cystic Fibrosis Transmembrane Conductance Regulator Colforsin Glyburide
Authors & Affiliations
24 authors, click to expand affiliations / ORCID
Becq F
Laboratoire de neurobiologie UPR-9024 CNRS, 31 ch. J. Aiguier F-13402 Marseille cedex 20, France. frederic.becq@campus.univ-poitiers.fr
Mettey Y
Gray M A
Galietta L J
Dormer R L
Merten M
Métayé T
Chappe V
Marvingt-Mounir C
Zegarra-Moran O
Tarran R
Bulteau L
Dérand R
Pereira M M
McPherson M A
Rogier C
Joffre M
Argent B E
Sarrouilhe D
Kammouni W
Figarella C
Verrier B
Gola M
Vierfond J M
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1999-09-24
Pages
27415-25
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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