<p><b>Electrophysiological recordings of (a, b) acetylcholine- and (c) epibatidine-evoked currents mediated by WT and the L119D mutant α7 nAChRs expressed in <i>Xenopus</i> oocytes.</b> (a) Representative current traces and (b, c) dose-response curves of ion currents. Each plot point reflects data obtained from 5–6 oocytes (mean ± SEM).</p
The Xenopus laevis oocyte offers one of the most convenient expression systems for assaying the acti...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...
The file contains the normalized electrophysiological (TEVC (two-electrode voltage clamp)) and calci...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
<p>Bar charts illustrate responses (mean ± SEM) from α7<sup>L247T</sup> nAChRs expressed in <i>Xenop...
<p>Agonist affinity to WT and mutant α7 nAChRs measured by calcium imaging of cell populations, and ...
<p>Bar charts illustrate responses (mean ± SEM) from α7 nAChRs expressed in <i>Xenopus</i> oocytes i...
<p>A) A bar chart illustrates responses (mean ± SEM) from α7 nAChRs expressed in <i>Xenopus</i> oocy...
We used amplifying effects of calcium channel beta subunits to identify endogenous calcium channels ...
AbstractXenopus oocytes expressing neuronal α1C, α2 and β1b calcium channel subunit cDNAs were used ...
<p>Representative traces are shown illustrating responses obtained at RT (black), 4°C (blue) and 37°...
The Xenopus laevis oocyte offers one of the most convenient expression systems for assaying the acti...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...
The file contains the normalized electrophysiological (TEVC (two-electrode voltage clamp)) and calci...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
Elucidation of the structural basis of pharmacological differences for highly homologous α7 and α9 n...
<p>Bar charts illustrate responses (mean ± SEM) from α7<sup>L247T</sup> nAChRs expressed in <i>Xenop...
<p>Agonist affinity to WT and mutant α7 nAChRs measured by calcium imaging of cell populations, and ...
<p>Bar charts illustrate responses (mean ± SEM) from α7 nAChRs expressed in <i>Xenopus</i> oocytes i...
<p>A) A bar chart illustrates responses (mean ± SEM) from α7 nAChRs expressed in <i>Xenopus</i> oocy...
We used amplifying effects of calcium channel beta subunits to identify endogenous calcium channels ...
AbstractXenopus oocytes expressing neuronal α1C, α2 and β1b calcium channel subunit cDNAs were used ...
<p>Representative traces are shown illustrating responses obtained at RT (black), 4°C (blue) and 37°...
The Xenopus laevis oocyte offers one of the most convenient expression systems for assaying the acti...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...
Oocytes from Xenopus laevis provide an efficient translation system for expressing ionic channels un...