Mechanism of allosteric activation of TMEM16A/ANO1 channels by a commonly used chloride channel blocker

被引:18
作者
Ta, Chau M. [1 ]
Adomaviciene, Aiste [1 ,2 ]
Rorsman, Nils J. G. [1 ,3 ]
Garnett, Hannah [1 ]
Tammaro, Paolo [1 ,3 ]
机构
[1] Univ Oxford, Dept Pharmacol, Mansfield Rd, Oxford OX1 3QT, England
[2] Univ Manchester, Fac Life Sci, Manchester, Lancs, England
[3] Univ Oxford, OXION Initiat Ion Channels & Dis, Mansfield Rd, Oxford OX1 3QT, England
基金
英国惠康基金; 英国生物技术与生命科学研究理事会;
关键词
CA2+-ACTIVATED CL-CHANNELS; CYSTIC-FIBROSIS; ANTHRACENE-9-CARBOXYLIC ACID; TRANSMEMBRANE PROTEIN; MOLECULAR-BASIS; BINDING-SITE; CURRENTS; CFTR; PHARMACOLOGY; CONDUCTANCE;
D O I
10.1111/bph.13381
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Background and PurposeCalcium-activated chloride channels (CaCCs) play varied physiological roles and constitute potential therapeutic targets for conditions such as asthma and hypertension. TMEM16A encodes a CaCC. CaCC pharmacology is restricted to compounds with relatively low potency and poorly defined selectivity. Anthracene-9-carboxylic acid (A9C), an inhibitor of various chloride channel types, exhibits complex effects on native CaCCs and cloned TMEM16A channels providing both activation and inhibition. The mechanisms underlying these effects are not fully defined. Experimental ApproachPatch-clamp electrophysiology in conjunction with concentration jump experiments was employed to define the mode of interaction of A9C with TMEM16A channels. Key ResultsIn the presence of high intracellular Ca2+, A9C inhibited TMEM16A currents in a voltage-dependent manner by entering the channel from the outside. A9C activation, revealed in the presence of submaximal intracellular Ca2+ concentrations, was also voltage-dependent. The electric distance of A9C inhibiting and activating binding site was similar to 0.6 in each case. Inhibition occurred according to an open-channel block mechanism. Activation was due to a dramatic leftward shift in the steady-state activation curve and slowed deactivation kinetics. Extracellular A9C competed with extracellular Cl-, suggesting that A9C binds deep in the channel's pore to exert both inhibiting and activating effects. Conclusions and ImplicationsA9C is an open TMEM16A channel blocker and gating modifier. These effects require A9C to bind to a region within the pore that is accessible from the extracellular side of the membrane. These data will aid the future drug design of compounds that selectively activate or inhibit TMEM16A channels.
引用
收藏
页码:511 / 528
页数:18
相关论文
共 61 条
  • [11] Expression profile and protein translation of TMEM16A in murine smooth muscle
    Davis, Alison J.
    Forrest, Abigail S.
    Jepps, Thomas A.
    Valencik, Maria L.
    Wiwchar, Michael
    Singer, Cherie A.
    Sones, William R.
    Greenwood, Iain A.
    Leblanc, Normand
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2010, 299 (05): : C948 - C959
  • [12] Donaldson SH, 2013, COLD SPRING HARBOR, V3
  • [13] Physiological roles and diseases of tmem16/anoctamin proteins: are they all chloride channels?
    Duran, Charity
    Hartzell, H. Criss
    [J]. ACTA PHARMACOLOGICA SINICA, 2011, 32 (06) : 685 - 692
  • [14] TMEM16A Induces MAPK and Contributes Directly to Tumorigenesis and Cancer Progression
    Duvvuri, Umamaheswar
    Shiwarski, Daniel J.
    Xiao, Dong
    Bertrand, Carol
    Huang, Xin
    Edinger, Robert S.
    Rock, Jason R.
    Harfe, Brian D.
    Henson, Brian J.
    Kunzelmann, Karl
    Schreiber, Rainer
    Seethala, Raja S.
    Egloff, Ann Marie
    Chen, Xing
    Lui, Vivian W.
    Grandis, Jennifer R.
    Gollin, Susanne M.
    [J]. CANCER RESEARCH, 2012, 72 (13) : 3270 - 3281
  • [15] Eggermont Jan, 2004, Proc Am Thorac Soc, V1, P22, DOI 10.1513/pats.2306010
  • [16] Conservation of chloride channel structure revealed by an inhibitor binding site in CIC-1
    Estévez, R
    Schroeder, BC
    Accardi, A
    Jentsch, TJ
    Pusch, M
    [J]. NEURON, 2003, 38 (01) : 47 - 59
  • [17] Molecular pharmacology of kidney and inner ear CLC-K chloride channels
    Gradogna, Antonella
    Pusch, Michael
    [J]. FRONTIERS IN PHARMACOLOGY, 2010, 1
  • [18] Flufenamic acid as an ion channel modulator
    Guinamard, Romain
    Simard, Christophe
    Del Negro, Christopher
    [J]. PHARMACOLOGY & THERAPEUTICS, 2013, 138 (02) : 272 - 284
  • [19] Insights into the effects of diclofenac and other non-steroidal anti-inflammatory agents on ion channels
    Gwanyanya, Asfree
    Macianskiene, Regina
    Mubagwa, Kanigula
    [J]. JOURNAL OF PHARMACY AND PHARMACOLOGY, 2012, 64 (10) : 1359 - 1375
  • [20] Calcium-activated chloride channels
    Hartzell, C
    Putzier, I
    Arreola, J
    [J]. ANNUAL REVIEW OF PHYSIOLOGY, 2005, 67 : 719 - 758