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S Dubel

Publications and source records attributed to S Dubel.

5 recordsLinked to original sources

The alpha1I T-type calcium channel exhibits faster gating properties when overexpressed in neuroblastoma/glioma NG 108-15 cells.

The recently cloned T-type calcium channel alpha1I (Cav3.3) displays atypically slow kinetics when compared to native T-channels. Possible explanations might involve alternative splicing of the alpha1I subunit, or the use of expression systems that do not provide a suitable environment (auxiliary subunit, phosphorylation, glycosylation...). In this study, two human alpha1I splice variants, the alpha1I-a and alpha1I-b isoforms that harbour distinct carboxy-terminal regions were studied using various expression systems. As the localization of the alpha1I subunit is primarily restricted to neuronal tissues, its functional expression was conducted in the neuroblastoma/glioma cell line NG 108-15, and the results compared to those obtained in HEK-293 cells and Xenopus oocytes. In Xenopus oocytes, both isoforms exhibited very slow current kinetics compared to those obtained in HEK-293 cells, but the alpha1I-b isoform generated faster currents than the alpha1I-a isoform. Both activation and inactivation kinetics of alpha1I currents were significantly faster in NG 108-15 cells, while deactivating tail currents were two times slower, compared to those obtained in HEK-293 cells. Moreover, the alpha1-b isoform showed significantly slower deactivation kinetics both in NG 1080-15 and in HEK-293 cells. Altogether, these data emphasize the advantage of combining several expression systems to reveal subtle differences in channel properties and further indicate that the major functional differences between both human alpha1I isoforms are related to current kinetics. More importantly, these data suggest that the expression of the alpha1I subunit in neuronal cells contributes to the "normalization" of current kinetics to the more classical, fast-gated T-type Ca2+ current.

Alternative Splicing↗

The antibody web

The internet has evolved to play a central role in the lives of immunologists. Powerful search engines facilitate the location of references or suppliers at the click of a mouse. Specialized websites provide reviews for many immunological topics and links for fast navigation to related information. This article highlights websites related to monoclonal and recombinant antibodies.

Journal Article↗

Elementary events underlying voltage-dependent G-protein inhibition of N-type calcium channels.

Voltage-dependent G-protein inhibition of N-type calcium channels reduces presynaptic calcium entry, sharply attenuating neurotransmitter release. Studies in neurons demonstrate that G-proteins have multiple modulatory effects on N-type channels. The observed changes may reflect genuine complexity in G-protein action and/or the intricate interactions of multiple channels and receptors in neurons. Expression of recombinant M2-muscarinic receptors and N-type channels in HEK 293 cells allowed voltage-dependent inhibition to be studied in isolation. In this system, receptor-activated G-proteins had only one effect: a 10-fold increase in the time required for channels to first open following membrane depolarization. There were no changes in gating after the channel first opened, and unitary currents were not detectably altered by modulation. Despite its simplicity, this single change successfully accounts for the complex alterations in whole-cell current observed during G-protein inhibition in neurons.

Calcium Channels↗

Mini set for iontophoresis for topical analgesia before injection.

Findings are reported on a prototype mini set for iontophoresis used to topically anesthetise the puncture spot before injection. The anesthetizing drug applied was a 2% solution of lignocaine which was iontophoresed for 10 min at a current of 1-2.5 mA. Observations were made according to a double-blind trial. After the lignocaine iontophoresis had been performed, 76% of injections were painless and 24% were reported painful. After the placebo iontophoresis, however, 87% of injections were painful. The difference is statistically significant. We conclude that iontophoresis by means of the mini set protects effectively against injection pain. The electronic structure of the device is unique and makes possible safe outpatient use.

Analgesia↗