4.5 Article

Divalent Heavy Metal Cations Block the TRPV1 Ca2+ Channel

Journal

BIOLOGICAL TRACE ELEMENT RESEARCH
Volume 151, Issue 3, Pages 451-461

Publisher

HUMANA PRESS INC
DOI: 10.1007/s12011-012-9570-y

Keywords

Heavy metals; Somatosensory system; Pain; Calcium channel; TRPV1; Cobalt

Funding

  1. National Office for Research and Technology [OMFB-01630, OMFB-01703, OMFB-01576/2006, BAROSS_DA07-DA_TECH_07-2008-0043, OM-00051/2005, OMFB-01575/2006, ERC_HU_09 3D_TRPV1 OMFB-01813/2009, TAMOP-4.2.1.B-09/1/KONV]
  2. Zoltan Magyary Foundation
  3. Marie Curie European Re-integration Grant [MC-IRG030854-PAINKILLER]
  4. Anyos Jedlik Program [NKFP-1-00019/2005]
  5. Hungarian Ministry of Health [552/2006]
  6. Hungarian Academy of Sciences
  7. [GVOP-3.3.1-05/1.-2005-05-0057/3.0]
  8. [BAROSS_DA07-DA_TECH_07-2008-0028]

Ask authors/readers for more resources

Transient receptor potential vanilloid 1 (TRPV1) is a non-selective cation channel involved in pain sensation and in a wide range of non-pain-related physiological and pathological conditions. The aim of the present study was to explore the effects of selected heavy metal cations on the function of TRPV1. The cations ranked in the following sequence of pore-blocking activity: Co2+ [half-maximal inhibitory concentration (IC50) = 13 mu M] > Cd2+ (IC50 = 38 mu M) > Ni2+ (IC50 = 62 mu M) > Cu2+ (IC50 = 200 mu M). Zn2+ proved to be a weak (IC50 = 27 mu M) and only partial inhibitor of the channel function, whereas Mg2+, Mn2+ and La3+ did not exhibit any substantial effect. Co2+, the most potent channel blocker, was able not only to compete with Ca2+ but also to pass with it through the open channel of TRPV1. In response to heat activation or vanilloid treatment, Co2+ accumulation was verified in TRPV1-transfected cell lines and in the TRPV1+ dorsal root ganglion neurons. The inhibitory effect was also demonstrated in vivo. Co2+ applied together with vanilloid agonists attenuated the nocifensive eye wipe response in mice. Different rat TRPV1 pore point mutants (Y627W, N628W, D646N and E651W) were created that can validate the binding site of previously used channel blockers in agonist-evoked Ca-45(2+) influx assays in cells expressing TRPV1. The IC50 of Co2+ on these point mutants were determined to be reasonably comparable to those on the wild type, which suggests that divalent cations passing through the TRPV1 channel use the same negatively charged amino acids as Ca2+.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.5
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available