Literature DB >> 16014805

Characteristics of ginsenoside Rg3-mediated brain Na+ current inhibition.

Jun-Ho Lee1, Sang Min Jeong, Jong-Hoon Kim, Byung-Hwan Lee, In-Soo Yoon, Joon-Hee Lee, Sun-Hye Choi, Dong-Hyun Kim, Hyewhon Rhim, Sung Soo Kim, Jai-Il Kim, Choon-Gon Jang, Jin-Ho Song, Seung-Yeol Nah.   

Abstract

We demonstrated previously that ginsenoside Rg(3) (Rg(3)), an active ingredient of Panax ginseng, inhibits brain-type Na(+) channel activity. In this study, we sought to elucidate the molecular mechanisms underlying Rg(3)-induced Na(+) channel inhibition. We used the two-microelectrode voltage-clamp technique to investigate the effect of Rg(3) on Na(+) currents (I(Na)) in Xenopus laevis oocytes expressing wild-type rat brain Na(V)1.2 alpha and beta1 subunits, or mutants in the channel entrance, the pore region, the lidocaine/tetrodotoxin (TTX) binding sites, the S4 voltage sensor segments of domains I to IV, and the Ile-Phe-Met inactivation cluster. In oocytes expressing wild-type Na(+) channels, Rg(3) induced tonic and use-dependent inhibitions of peak I(Na). The Rg(3)-induced tonic inhibition of I(Na) was voltage-dependent, dose-dependent, and reversible, with an IC(50) value of 32 +/- 6 microM. Rg(3) treatment produced a 11.2 +/- 3.5 mV depolarizing shift in the activation voltage but did not alter the steady-state inactivation voltage. Mutations in the channel entrance, pore region, lidocaine/TTX binding sites, or voltage sensor segments did not affect Rg(3)-induced tonic blockade of peak I(Na). However, Rg(3) treatment inhibited the peak and plateau I(Na) in the IFMQ3 mutant, indicating that Rg(3) inhibits both the resting and open states of Na(+) channel. Neutralization of the positive charge at position 859 of voltage sensor segment domain II abolished the Rg(3)-induced activation voltage shift and use-dependent inhibition. These results reveal that Rg(3) is a novel Na(+) channel inhibitor capable of acting on the resting and open states of Na(+) channel via interactions with the S4 voltage-sensor segment of domain II.

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Year:  2005        PMID: 16014805     DOI: 10.1124/mol.105.015115

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  10 in total

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2.  Ginsenoside Rg3 enhances large conductance Ca2+-activated potassium channel currents: a role of Tyr360 residue.

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Review 5.  Yin and Yang of ginseng pharmacology: ginsenosides vs gintonin.

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7.  Ginseng gintonin activates the human cardiac delayed rectifier K+ channel: involvement of Ca2+/calmodulin binding sites.

Authors:  Sun-Hye Choi; Byung-Hwan Lee; Hyeon-Joong Kim; Seok-Won Jung; Hyun-Sook Kim; Ho-Chul Shin; Jun-Hee Lee; Hyoung-Chun Kim; Hyewhon Rhim; Sung-Hee Hwang; Tal Soo Ha; Hyun-Ji Kim; Hana Cho; Seung-Yeol Nah
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9.  Effects of protopanaxatriol-ginsenoside metabolites on rat N-methyl-d-aspartic Acid receptor-mediated ion currents.

Authors:  Tae-Joon Shin; Sung-Hee Hwang; Sun-Hye Choi; Byung-Hwan Lee; Jiyeon Kang; Hyeon-Joong Kim; R Suzanne Zukin; Hyewhon Rhim; Seung-Yeol Nah
Journal:  Korean J Physiol Pharmacol       Date:  2012-04-24       Impact factor: 2.016

10.  Differential effects of ginsenoside metabolites on slowly activating delayed rectifier K(+) and KCNQ1 K(+) channel currents.

Authors:  Sun-Hye Choi; Byung-Hwan Lee; Hyeon-Joong Kim; Seok-Won Jung; Sung-Hee Hwang; Seung-Yeol Nah
Journal:  J Ginseng Res       Date:  2013-07       Impact factor: 6.060

  10 in total

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