Structural basis for specificity and potency of xanthine derivatives as activators of the CFTR chloride channel

被引:52
作者
Chappe, V
Mettey, Y
Vierfond, JM
Hanrahan, JW
Gola, M
Verrier, B
Becq, F
机构
[1] CNRS, Neurobiol Lab, F-13402 Marseille 20, France
[2] Fac Med & Pharm Poitiers, Chim Organ Lab, F-86005 Poitiers, France
[3] McGill Univ, Dept Physiol, Montreal, PQ H3G 1Y6, Canada
关键词
CFTR chloride channel; xanthine derivatives; iodide efflux; patch clamp;
D O I
10.1038/sj.bjp.0701648
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
1 On the basis of their structure, we compared the ability of 35 xanthine derivatives to activate the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel stably expressed in chinese hamster ovary (CHO) cells using the cell-attached patch clamp and iodide efflux techniques. 2 Activation of CFTR channels was obtained with 3-mono, 1,3-di or 1,3,7-tri-substituted alkyl xanthine derivatives (enprofylline, theophylline, aminophylline, IBMX, DPMX and pentoxifylline). By contrast, xanthine derivatives substituted at the C8- or N9-position failed to open CFTR channels. 3 The CFTR chloride channel activity was blocked by glibenclamide (100 mu M) but not by DIDS (100 mu M). 4 Activation of CFTR by xanthines was not mimicked by the calcium ionophore A23187, adenosine, UTP, ATP or the specific phosphodiesterase inhibitors rolipram, Ro 20-1724 and milrinone. In addition, we found no correlation between the effect of xanthines on CFTR and on the cellular cyclic AMP or ATP levels. 5 We then synthesized a series of 3,7-dimethyl-1-alkyl xanthine derivatives; among them, 3,7-dimethyl-1-propyl xanthine and 3,7-dimethyl-1-isobutyl xanthine both activated CFTR channels without increasing the intracellular cyclic AMP level, while the structurally related 3,7-dimethyl-1-(2-propenyl) xanthine and 3,7-dimethyl-1-(oxiranyl methyl) xanthine were inactive. 6 Our findings delineate a novel function for xanthine compounds and identify the molecular features that enable xanthine activation of CFTR. These results may be useful in the development of new molecules for studying the pharmacology of chloride channels.
引用
收藏
页码:683 / 693
页数:11
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