AbstractXenopus oocytes express mechanosensitive (MSXO) channels that can be studied in excised patches of membrane with the patch-clamp technique. This study examines the steady-state kinetic gating properties of MSXO channels using detailed single-channel analysis. The open and closed one-dimensional dwell-time distributions were described by the sums of 2–3 open and 5–7 closed exponential components, respectively, indicating that the channels enter at least 2–3 open and 5–7 closed kinetic states during gating. Dependency plots revealed that the durations of adjacent open and closed intervals were correlated, indicating two or more gateway states in the gating mechanism for MS channels. Maximum likelihood fitting of two-dimensional dwell-...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractHuman P2X7 receptors were expressed in Xenopus laevis oocytes and single channels were recor...
AbstractThe mechanosensitive channel of large conductance acts as a biological “emergency release va...
AbstractXenopus oocytes express mechanosensitive (MSXO) channels that can be studied in excised patc...
AbstractTo investigate the mechanism for the delayed activation by voltage of the predominant mechan...
AbstractThe Ca2+-dependent gating mechanism of cloned BK channels from Drosophila (dSlo) was studied...
AbstractTo investigate the mechanism for the delayed activation by voltage of the predominant mechan...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractThe mechanosensitive channel of large conductance acts as a biological “emergency release va...
The oocytes of the African clawed frog (Xenopus laevis) comprise one of the most widely used membran...
The oocytes of the African clawed frog (Xenopus laevis) comprise one of the most widely used membran...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
<p>(A) Slick channels (Slick, black) or Slick channels and AQP1 (Slick+AQP1, red) were expressed in ...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractHuman P2X7 receptors were expressed in Xenopus laevis oocytes and single channels were recor...
AbstractThe mechanosensitive channel of large conductance acts as a biological “emergency release va...
AbstractXenopus oocytes express mechanosensitive (MSXO) channels that can be studied in excised patc...
AbstractTo investigate the mechanism for the delayed activation by voltage of the predominant mechan...
AbstractThe Ca2+-dependent gating mechanism of cloned BK channels from Drosophila (dSlo) was studied...
AbstractTo investigate the mechanism for the delayed activation by voltage of the predominant mechan...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractThe mechanosensitive channel of large conductance acts as a biological “emergency release va...
The oocytes of the African clawed frog (Xenopus laevis) comprise one of the most widely used membran...
The oocytes of the African clawed frog (Xenopus laevis) comprise one of the most widely used membran...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
We have successfully expressed and characterized mechanosensitive channel of small conductance (MscS...
<p>(A) Slick channels (Slick, black) or Slick channels and AQP1 (Slick+AQP1, red) were expressed in ...
Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in cha...
AbstractHuman P2X7 receptors were expressed in Xenopus laevis oocytes and single channels were recor...
AbstractThe mechanosensitive channel of large conductance acts as a biological “emergency release va...