An inhibitor of TRPV1 channels isolated from funnel web spider venom

被引:59
作者
Kitaguchi, T [1 ]
Swartz, KJ [1 ]
机构
[1] NIH, Mol Physiol & Biophys Sect, Porter Neurosci Res Ctr, Natl Inst Neurol Disorders & Stroke, Bethesda, MD 20892 USA
关键词
D O I
10.1021/bi051494l
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
Capsaicin receptor channels (TRPV1) are nonselective cation channels that integrate multiple noxious stimuli in sensory neurons. In an effort to identify new inhibitors of these channels we screened a venom library for activity against TRPV1 channels and found robust inhibitory activity in venom from Agelenopsis aperta, a north American funnel web spider. Fractionation of the venom using reversed-phase HPLC resulted in the purification of two acylpolyamine toxins, AG489 and AG505, which inhibit TRPV1 channels from the extracellular side of the membrane. The activity of AG489 was characterized further, and the toxin was found to inhibit TRPV1 channels with a K-i of 0.3 mu M at -40 mV. Inhibition of TRPV1 channels by AG489 is strongly voltage-dependent, with relief of inhibition at positive voltages, consistent with the toxin inhibiting the channel through a pore-blocking mechanism. We used scanning mutagenesis throughout the TM5-TM6 linker, a region thought to form the outer pore of TRPV1 channels, to identify pore mutations that alter toxin affinity. Four mutants dramatically decrease toxin affinity and several mutants increase toxin affinity, consistent with the notion that the TM5-TM6 linker forms the outer vestibule of TRPV1 channels and that AG489 is a pore blocker.
引用
收藏
页码:15544 / 15549
页数:6
相关论文
共 44 条
[1]   2 CLASSES OF CHANNEL-SPECIFIC TOXINS FROM FUNNEL WEB SPIDER VENOM [J].
ADAMS, ME ;
HEROLD, EE ;
VENEMA, VJ .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 1989, 164 (03) :333-342
[2]   Agatoxins:: ion channel specific toxins from the American funnel web spider, Agelenopsis aperta [J].
Adams, ME .
TOXICON, 2004, 43 (05) :509-525
[3]   RUTHENIUM RED AS A CAPSAICIN ANTAGONIST [J].
AMANN, R ;
MAGGI, CA .
LIFE SCIENCES, 1991, 49 (12) :849-856
[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]   SELECTIVE ANTAGONISM OF CAPSAICIN BY CAPSAZEPINE - EVIDENCE FOR A SPINAL RECEPTOR-SITE IN CAPSAICIN-INDUCED ANTINOCICEPTION [J].
DICKENSON, AH ;
DRAY, A .
BRITISH JOURNAL OF PHARMACOLOGY, 1991, 104 (04) :1045-1049
[7]   The structure of the potassium channel:: Molecular basis of K+ conduction and selectivity [J].
Doyle, DA ;
Cabral, JM ;
Pfuetzner, RA ;
Kuo, AL ;
Gulbis, JM ;
Cohen, SL ;
Chait, BT ;
MacKinnon, R .
SCIENCE, 1998, 280 (5360) :69-77
[8]   ARGIOTOXIN636 INHIBITS NMDA-ACTIVATED ION CHANNELS EXPRESSED IN XENOPUS OOCYTES [J].
DRAGUHN, A ;
JAHN, W ;
WITZEMANN, V .
NEUROSCIENCE LETTERS, 1991, 132 (02) :187-190
[9]   Identification of an aspartic residue in the P-loop of the vanilloid receptor that modulates pore properties [J].
García-Martínez, C ;
Morenilla-Palao, C ;
Planells-Cases, R ;
Merino, JM ;
Ferrer-Montiel, A .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (42) :32552-32558
[10]   CALCULATION OF PROTEIN EXTINCTION COEFFICIENTS FROM AMINO-ACID SEQUENCE DATA [J].
GILL, SC ;
VONHIPPEL, PH .
ANALYTICAL BIOCHEMISTRY, 1989, 182 (02) :319-326