Effects of the ventilatory stimulant, doxapram on human TASK-3 (KCNK9, K2P9.1) channels and TASK-1 (KCNK3, K2P3.1) channels

被引:19
作者
Cunningham, Kevin P. [1 ,2 ]
MacIntyre, D. Euan [3 ]
Mathie, Alistair [1 ,2 ]
Veale, Emma L. [1 ,2 ]
机构
[1] Univ Greenwich, Medway Sch Pharm, Chatham, England
[2] Univ Kent, Chatham, England
[3] Galleon Pharmaceut Inc, Dept Drug Discovery, Horsham, PA USA
关键词
doxapram; enantiomers; heterodimers; K2P channels; respiratory stimulant; TASK-1; channels; TASK-3; DOMAIN POTASSIUM CHANNEL; CAROTID-BODY CELLS; K+ CHANNEL; CRYSTAL-STRUCTURE; OXYGEN; RAT; CHEMORECEPTORS; RESPONSES; ACID; IDENTIFICATION;
D O I
10.1111/apha.13361
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Aims The mode of action by which doxapram acts as a respiratory stimulant in humans is controversial. Studies in rodent models, have shown that doxapram is a more potent and selective inhibitor of TASK-1 and TASK-1/TASK-3 heterodimer channels, than TASK-3. Here we investigate the direct effect of doxapram and chirally separated, individual positive and negative enantiomers of the compound, on both human and mouse, homodimeric and heterodimeric variants of TASK-1 and TASK-3. Methods Whole-cell patch clamp electrophysiology on tsA201 cells was used to assess the potency of doxapram on cloned human or mouse TASK-1, TASK-3 and TASK-2 channels. Mutations of amino acids in the pore-lining region of TASK-3 channels were introduced using site-directed mutagenesis. Results Doxapram was an equipotent inhibitor of human TASK-1 and TASK-3 channels, compared with mouse channel variants, where it was more selective for TASK-1 and heterodimers of TASK-1 and TASK-3. The effect of doxapram could be attenuated by either the removal of the C-terminus of human TASK-3 channels or mutations of particular hydrophobic residues in the pore-lining region. These mutations, however, did not alter the effect of a known extracellular inhibitor of TASK-3, zinc. The positive enantiomer of doxapram, GAL-054, was a more potent antagonist of TASK channels, than doxapram, whereas the negative enantiomer, GAL-053, had little inhibitory effect. Conclusion These data show that in contrast to rodent channels, doxapram is a potent inhibitor of both TASK-1 and TASK-3 human channels, providing further understanding of the pharmacological profile of doxapram in humans and informing the development of new therapeutic agents.
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页数:13
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共 57 条
[1]   Neuroendocrine responses to laboratory panic: Cognitive intervention in the doxapram model [J].
Abelson, JL ;
Weg, JG ;
Nesse, RM ;
Curtis, GC .
PSYCHONEUROENDOCRINOLOGY, 1996, 21 (04) :375-390
[2]   Metabolic and thermal stimuli control K2P2.1 (TREK-1) through modular sensory and gating domains [J].
Bagriantsev, Sviatoslav N. ;
Clark, Kimberly A. ;
Minor, Daniel L., Jr. .
EMBO JOURNAL, 2012, 31 (15) :3297-3308
[3]   Maternally inherited Birk barel mental retardation dysmorphism syndrome caused by a mutation in the genomically imprinted potassium channel KCNK9 [J].
Barel, Ortal ;
Shalev, Stavit A. ;
Ofir, Rivka ;
Cohen, Asi ;
Zlotogora, Joel ;
Shorer, Zamir ;
Mazor, Galia ;
Finer, Gal ;
Khateeb, Shareef ;
Zilberberg, Noam ;
Birk, Ohad S. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2008, 83 (02) :193-199
[4]   Mutation of a single residue promotes gating of vertebrate and invertebrate two-pore domain potassium channels [J].
Ben Soussia, Ismail ;
El Mouridi, Sonia ;
Kang, Dawon ;
Leclercq-Blondel, Alice ;
Khoubza, Lamyaa ;
Tardy, Philippe ;
Zariohi, Nora ;
Gendrel, Marie ;
Lesage, Florian ;
Kim, Eun-Jin ;
Bichet, Delphine ;
Andrini, Olga ;
Boulin, Thomas .
NATURE COMMUNICATIONS, 2019, 10 (1)
[5]   Crystal Structure of the Human K2P TRAAK, a Lipid- and Mechano-Sensitive K+ Ion Channel [J].
Brohawn, Stephen G. ;
del Marmol, Josefina ;
MacKinnon, Roderick .
SCIENCE, 2012, 335 (6067) :436-441
[6]   TASK-like potassium channels and oxygen sensing in the carotid body [J].
Buckler, Keith J. .
RESPIRATORY PHYSIOLOGY & NEUROBIOLOGY, 2007, 157 (01) :55-64
[7]   TASK channels in arterial chemoreceptors and their role in oxygen and acid sensing [J].
Buckler, Keith J. .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2015, 467 (05) :1013-1025
[8]   An oxygen-, acid- and anaesthetic-sensitive TASK-like background potassium channel in rat arterial chemoreceptor cells [J].
Buckler, KJ ;
Williams, BA ;
Honore, E .
JOURNAL OF PHYSIOLOGY-LONDON, 2000, 525 (01) :135-142
[9]   A novel oxygen-sensitive potassium current in rat carotid body type I cells [J].
Buckler, KJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1997, 498 (03) :649-662
[10]   THE VENTILATORY EFFECTS OF DOXAPRAM IN NORMAL MAN [J].
CALVERLEY, PMA ;
ROBSON, RH ;
WRAITH, PK ;
PRESCOTT, LF ;
FLENLEY, DC .
CLINICAL SCIENCE, 1983, 65 (01) :65-69