Reconstitution of Neurotoxin-Modulated Ion Transport by the Voltage-Regulated Sodium Channel Isolated from the Electroplax of Electrophorus electricus
The functional reconstitution of the voltage-regulated Na channel purified from the electroplax of Electrophorus electricus is described. Reconstitution was achieved by removing detergent with Bio-Beads SM-2 followed by freeze--thaw--sonication in the presence of added liposomes. This preparation di...
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Veröffentlicht in: | Proceedings of the National Academy of Sciences - PNAS 1984-02, Vol.81 (4), p.1239-1243 |
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Sprache: | eng |
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Zusammenfassung: | The functional reconstitution of the voltage-regulated Na channel purified from the electroplax of Electrophorus electricus is described. Reconstitution was achieved by removing detergent with Bio-Beads SM-2 followed by freeze--thaw--sonication in the presence of added liposomes. This preparation displayed heat-stable binding of3H-labeled tetrodotoxin (TTX) (Kd= 33 nM).22Na+influx was stimulated 2- to 5-fold by alkaloid neurotoxins and blocked by TTX. Veratridine activated Na+influx with a K1/2of 18 μ M, and this activation was blocked by TTX precisely in parallel with specific [3H]TTX binding. Batrachotoxin stimulated22Na+flux more effectively than did veratridine. No effect of the peptide anemone toxin II was found. Insertion of the Na channel into membranes resulted in 60-70% of the TTX-binding sites facing the vesicle exterior. Thus, external TTX partially inhibited flux, whereas blockade was complete when TTX was also equilibrated with the vesicle interior. The lipid-soluble local anesthetics tetracaine and dibucaine inhibited flux completely. QX-222, a charged derivative of lidocaine, blocked only a fraction of the channels, apparently those oriented inside-out. Purified samples were predominantly composed of the Mr260,000-300,000 glycopeptide but contained variable quantities of smaller peptides. Veratridine-dependent flux and peptide compositions were determined on fractions across a gel filtration column profile. Stimulated flux codistributed only with the large peptide. |
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ISSN: | 0027-8424 1091-6490 |
DOI: | 10.1073/pnas.81.4.1239 |