Uv. Lalo et al., Omega-Conotoxin GVIA potently inhibits the currents mediated by P2X receptors in rat DRG neurons, BRAIN RES B, 54(5), 2001, pp. 507-512
We examined effects of w-conotoxin previously known as a selective blocker
of N-type calcium channels, on the adenosine triphosphate (ATP)-induced cur
rents in the rat dorsal root ganglion neurons. These neurons express at lea
st two types of ionotropic purinoreceptors: P2X3 receptors that have very r
apid desensitization kinetics and P2X2/X3 heterooligomeric receptor, which
exhibits slow desensitization. We have found that w-conotoxin GVIA potently
inhibits the inward currents mediated by both receptor types. This effect
was specific for the receptor subtypes: the IC50 value for responses evoked
by 10 muM ATP was 21.2 +/- 1.7 nM for the P2X3 receptor-mediated responses
and 3.84 +/- 0.43 muM for slower responses mediated by P2X2/X3 heteropolym
ers. The efficacy of another type of w-conotoxin, MVIIC, is much lower: at
10 muM the latter toxin inhibited the rapidly desensitizing response by 65%
and the slowly desensitizing response by 18%. The effects of both toxins w
ere reversible and independent on the membrane potential. Omega -Conotoxin
GVIA shifted the dose dependence for the agonistic action of ATP on P2X3 re
ceptors to higher concentrations without producing any effect on the kineti
cs of the response. It is suggested that w-conotoxin allosterically modulat
es the receptor properties, rather than competes for the agonist binding si
te. (C) 2001 Elsevier Science Inc.