Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
???displayArticle.abstract???
Tetrodotoxin (TTX) is a potent blocker of voltage-gated sodium channels, but not all sodium channels are equally sensitive to inhibition by TTX. The molecular basis of differential TTX sensitivity of mammalian sodium channels has been largely elucidated. In contrast, our knowledge about the sensitivity of invertebrate sodium channels to TTX remains poor, in part because of limited success in functional expression of these channels. In this study, we report the functional characterization in Xenopus oocytes of the first non-insect, invertebrate voltage-gated sodium channel from the varroa mite (Varroa destructor), an ecto-parasite of the honeybee. This arachnid sodium channel activates and inactivates rapidly with half-maximal activation at -18 mV and half-maximal fast inactivation at -29 mV. Interestingly, this arachnid channel showed surprising TTX resistance. TTX blocked this channel with an IC(50) of 1 microM. Subsequent site-directed mutagenesis revealed two residues, Thr-1674 and Ser-1967, in the pore-forming region of domains III and IV, respectively, which were responsible for the observed resistance to inhibition by TTX. Furthermore, sequence comparison and additional amino acid substitutions suggested that sequence polymorphisms at these two positions could be a widespread mechanism for modulating TTX sensitivity of sodium channels in diverse invertebrates.
Backx,
Molecular localization of an ion-binding site within the pore of mammalian sodium channels.
1992, Pubmed
Backx,
Molecular localization of an ion-binding site within the pore of mammalian sodium channels.
1992,
Pubmed Catterall,
From ionic currents to molecular mechanisms: the structure and function of voltage-gated sodium channels.
2000,
Pubmed Dib-Hajj,
NaN/Nav1.9: a sodium channel with unique properties.
2002,
Pubmed Feng,
Cloning and functional analysis of TipE, a novel membrane protein that enhances Drosophila para sodium channel function.
1995,
Pubmed
,
Xenbase Geffeney,
Mechanisms of adaptation in a predator-prey arms race: TTX-resistant sodium channels.
2002,
Pubmed Geffeney,
Evolutionary diversification of TTX-resistant sodium channels in a predator-prey interaction.
2005,
Pubmed
,
Xenbase Goldin,
Diversity of mammalian voltage-gated sodium channels.
1999,
Pubmed Goldin,
Evolution of voltage-gated Na(+) channels.
2002,
Pubmed Heinemann,
Calcium channel characteristics conferred on the sodium channel by single mutations.
1992,
Pubmed
,
Xenbase Kleinhaus,
Diversity and modulation of ionic conductances in leech neurons.
1995,
Pubmed Liu,
Persistent tetrodotoxin-sensitive sodium current resulting from U-to-C RNA editing of an insect sodium channel.
2004,
Pubmed Loughney,
Molecular analysis of the para locus, a sodium channel gene in Drosophila.
1989,
Pubmed Meech,
Ionic currents in giant motor axons of the jellyfish, Aglantha digitale.
1993,
Pubmed Nagahora,
Diversity of voltage-gated sodium channels in the ascidian larval nervous system.
2000,
Pubmed NARAHASHI,
TETRODOTOXIN BLOCKAGE OF SODIUM CONDUCTANCE INCREASE IN LOBSTER GIANT AXONS.
1964,
Pubmed Noda,
A single point mutation confers tetrodotoxin and saxitoxin insensitivity on the sodium channel II.
1989,
Pubmed
,
Xenbase Satin,
A mutant of TTX-resistant cardiac sodium channels with TTX-sensitive properties.
1992,
Pubmed
,
Xenbase Schlief,
Pore properties of rat brain II sodium channels mutated in the selectivity filter domain.
1996,
Pubmed
,
Xenbase Sivilotti,
A single serine residue confers tetrodotoxin insensitivity on the rat sensory-neuron-specific sodium channel SNS.
1997,
Pubmed
,
Xenbase Song,
RNA editing generates tissue-specific sodium channels with distinct gating properties.
2004,
Pubmed
,
Xenbase Soong,
Adaptive evolution of tetrodotoxin resistance in animals.
2006,
Pubmed Spafford,
Pharmacological properties of voltage-gated Na+ currents in motor neurones from a hydrozoan jellyfish Polyorchis penicillatus.
1996,
Pubmed Spafford,
A putative voltage-gated sodium channel alpha subunit (PpSCN1) from the hydrozoan jellyfish, Polyorchis penicillatus: structural comparisons and evolutionary considerations.
1998,
Pubmed Terlau,
Mapping the site of block by tetrodotoxin and saxitoxin of sodium channel II.
1991,
Pubmed
,
Xenbase Venkatesh,
Genetic basis of tetrodotoxin resistance in pufferfishes.
2005,
Pubmed Wang,
Molecular characterization of an arachnid sodium channel gene from the varroa mite (Varroa destructor).
2003,
Pubmed Zhou,
A voltage-gated calcium-selective channel encoded by a sodium channel-like gene.
2004,
Pubmed
,
Xenbase