Potentiation of TRPC5 by protons

被引:78
作者
Semtner, Marcus
Schaefer, Michael
Pinkenburg, Olaf
Plant, Tim D.
机构
[1] Univ Marburg, Inst Pharmakol & Toxikol, Fachbereich Med, D-35032 Marburg, Germany
[2] Charite Campus Benjamin Franklin, Inst Pharmakol, D-14195 Berlin, Germany
关键词
D O I
10.1074/jbc.M702577200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mammalian members of the classical transient receptor potential channel subfamily ( TRPC) are Ca2+-permeable cation channels involved in receptor-mediated increases in intracellular Ca2+. TRPC4 and TRPC5 form a group within the TRPC subfamily and are activated in a phospholipase C-dependent manner by an unidentified messenger. Unlike most other Ca2+-permeable channels, TRPC4 and -5 are potentiated by micromolar concentrations of La3+ and Gd3+. This effect results from an action of the cations at two glutamate residues accessible from the extracellular solution. Here, we show that TRPC4 and -5 respond to changes in extracellular pH. Lowering the pH increased both G protein-activated and spontaneous TRPC5 currents. Both effects were already observed with small reductions in pH ( from 7.4 to 7.0) and increased up to pH 6.5. TRPC4 was also potentiated by decreases in pH, whereas TRPC6 was only inhibited, with a pIC(50) of 5.7. Mutation of the glutamate residues responsible for lanthanoid sensitivity of TRPC5 (E543Q and E595Q) modified the potentiation of TRPC5 by acid. Further evidence for a similarity in the actions of lanthanoids and H+ on TRPC5 is the reduction in single channel conductance and dramatic increase in channel open probability in the presence of either H+ or Gd3+ that leads to larger integral currents. In conclusion, the high sensitivity of TRPC5 to H+ indicates that, in addition to regulation by phospholipase C and other factors, the channel may act as a sensor of pH that links decreases in extracellular pH to Ca2+ entry and depolarization.
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页码:33868 / 33878
页数:11
相关论文
共 45 条
[1]   Extracellular cations sensitize and gate capsaicin receptor TRPV1 modulating pain signaling [J].
Ahern, GP ;
Brooks, IM ;
Miyares, RL ;
Wang, XB .
JOURNAL OF NEUROSCIENCE, 2005, 25 (21) :5109-5116
[2]  
Baumann TK, 2000, J NEUROSCI, V20
[3]  
Beech D. J., 2007, V179, P109
[4]   Impaired nociception and pain sensation in mice lacking the capsaicin receptor [J].
Caterina, MJ ;
Leffler, A ;
Malmberg, AB ;
Martin, WJ ;
Trafton, J ;
Petersen-Zeitz, KR ;
Koltzenburg, M ;
Basbaum, AI ;
Julius, D .
SCIENCE, 2000, 288 (5464) :306-313
[5]   The capsaicin receptor: a heat-activated ion channel in the pain pathway [J].
Caterina, MJ ;
Schumacher, MA ;
Tominaga, M ;
Rosen, TA ;
Levine, JD ;
Julius, D .
NATURE, 1997, 389 (6653) :816-824
[6]   TRP channels as cellular sensors [J].
Clapham, DE .
NATURE, 2003, 426 (6966) :517-524
[7]   International Union of Pharmacology. XLIX. Nomenclature and structure-function relationships of transient receptor potential channels [J].
Clapham, DE ;
Julius, D ;
Montell, C ;
Schultz, G .
PHARMACOLOGICAL REVIEWS, 2005, 57 (04) :427-450
[8]   SODIUM AND CALCIUM CHANNELS IN BOVINE CHROMAFFIN CELLS [J].
FENWICK, EM ;
MARTY, A ;
NEHER, E .
JOURNAL OF PHYSIOLOGY-LONDON, 1982, 331 (OCT) :599-635
[9]   Sensing of lysophospholipids by TRPC5 calcium channel [J].
Flemming, PK ;
Dedman, AM ;
Xu, SZ ;
Li, J ;
Zeng, FN ;
Naylor, J ;
Benham, CD ;
Bateson, AN ;
Muraki, K ;
Beech, DJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (08) :4977-4982
[10]   Proton activation does not alter antagonist interaction with the capsaicin-binding pocket of TRPV1 [J].
Gavva, NR ;
Tamir, R ;
Klionsky, L ;
Norman, MH ;
Louis, JC ;
Wild, KD ;
Treanor, JJS .
MOLECULAR PHARMACOLOGY, 2005, 68 (06) :1524-1533