Flufenamic acid is a pH-dependent antagonist of TRPM2 channels

被引:123
作者
Hill, K
Benham, CD
McNulty, S
Randall, AD
机构
[1] GlaxoSmithKline Res & Dev Ltd, Dept Neurol, Harlow CM19 5AW, Essex, England
[2] GlaxoSmithKline Res & Dev Ltd, GI CEDD, Harlow CM19 5AW, Essex, England
关键词
transient receptor potential; TRPM2; fenamate; calcium; flufenamic acid;
D O I
10.1016/j.neuropharm.2004.04.014
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Like a number of other TRP channels, TRPM2 is a Ca2+-permeable non-selective cation channel, the activity of which is regulated by intracellular and extracellular Ca2+. A unique feature of TRPM2 is its activation by ADP-ribose and chemical species that arise during oxidative stress, for example, NAD(+) and H2O2. These properties have lead to proposals that this channel may play a role in the cell death produced by pathological redox states. The lack of known antagonists of this channel have made these hypotheses difficult to test. Here, we demonstrate, using patch clamp electrophysiology, that the non-steroidal anti-inflammatory compound flufenamic acid (FFA) inhibits recombinant human TRPM2 (hTRPM2) as well as currents activated by intracellular ADP-ribose in the CRI-G1 rat insulinoma cell line. All concentrations tested in a range from 50 to 1000 muM produced complete inhibition of the TRPM2-mediated current. Following FFA removal, a small (typically 10-15%) component of current was rapidly recovered (time constant similar to3 s), considerably longer periods in the absence of FFA produced no further current recovery. Reapplication of FFA re-antagonised the recovered current and subsequent FFA washout produced recovery of only a small percentage of the reblocked current. Decreasing extracellular pH accelerated FFA inhibition of TRPM2. Additional experiments indicated hTRPM2 activation was required for FFA antagonism to occur and that the generation of irreversible antagonism was preceded by a reversible component of block. FFA inhibition could not be induced by intracellular application of FFA. ADPribose activated currents in the rat insulinoma cell line CRI-G1 were also antagonised by FFA with concentration- and pH-dependent kinetics. In contrast to the observations made with hTRPM2, antagonism of ADP-ribose activated currents in CRI-G1 cells could be fully reversed following FFA removal. These experiments suggest that FFA may be a useful tool antagonist for studies of TRPM2 function. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:450 / 460
页数:11
相关论文
共 30 条
[1]  
BEVAN S, 1990, TRENDS PHARMACOL SCI, V11, P330
[2]  
BOLAND LM, 1994, J NEUROSCI, V14, P5011
[3]   Fenamates protect neurons against ischemic and excitotoxic injury in chick embryo retina [J].
Chen, Q ;
Olney, JW ;
Lukasiewicz, PD ;
Almli, T ;
Romano, C .
NEUROSCIENCE LETTERS, 1998, 242 (03) :163-166
[4]   Calcium-activated cationic channel in rat sensory neurons [J].
Cho, HW ;
Kim, MS ;
Shim, WS ;
Yang, YD ;
Koo, J ;
Oh, U .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2003, 17 (12) :2630-2638
[5]   International Union of Pharmacology. XLIII. Compendium of voltage-gated ion channels: Transient receptor potential channels [J].
Clapham, DE ;
Montell, C ;
Schultz, G ;
Julius, D .
PHARMACOLOGICAL REVIEWS, 2003, 55 (04) :591-596
[6]   Molecular and functional characterization of the melastatin-related cation channel TRPM3 [J].
Grimm, C ;
Kraft, R ;
Sauerbruch, S ;
Schultz, G ;
Harteneck, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (24) :21493-21501
[7]   LTRPC2 Ca2+-permeable channel activated by changes in redox status confers susceptibility to cell death [J].
Hara, Y ;
Wakamori, M ;
Ishii, M ;
Maeno, E ;
Nishida, M ;
Yoshida, T ;
Yamada, H ;
Shimizu, S ;
Mori, E ;
Kudoh, J ;
Shimizu, N ;
Kurose, H ;
Okada, Y ;
Imoto, K ;
Mori, Y .
MOLECULAR CELL, 2002, 9 (01) :163-173
[8]   Expression profile of the transient receptor potential (TRP) family in neutrophil granulocytes:: evidence for currents through long TRP channel 2 induced by ADP-ribose and NAD [J].
Heiner, I ;
Eisfeld, J ;
Halaszovich, CR ;
Wehage, E ;
Jüngling, E ;
Zitt, C ;
Lückhoff, A .
BIOCHEMICAL JOURNAL, 2003, 371 :1045-1053
[9]   Hydrogen peroxide induces intracellular calcium overload by activation of a non-selective cation channel in an insulin-secreting cell line [J].
Herson, PS ;
Lee, K ;
Pinnock, RD ;
Hughes, J ;
Ashford, MLJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (02) :833-841
[10]   Response to ADP-ribose by activation of TRPM2 in the CRI-G1 insulinoma cell line [J].
Inamura, K ;
Sano, Y ;
Mochizuki, S ;
Yokoi, H ;
Miyake, A ;
Nozawa, K ;
Kitada, C ;
Matsushime, H ;
Furuichi, K .
JOURNAL OF MEMBRANE BIOLOGY, 2003, 191 (03) :201-207