Activation of resting T cells relies on sustained Ca2+ influx across the plasma membrane, which in turn depends on the functional expression of potassium channels, whose activity repolarizes the membrane potential. Depending on the T-cells subset, upon activation the expression of Ca2+- or voltage-activated K+ channels, KCa or Kv, is up-regulated. In this study, by means of patch-clamp technique in the whole cell mode, we have studied in detail the characteristics of Kv and KCa currents in resting and activated human T cells, the only well explored human T-leukemic cell line Jurkat, and two additional human leukemic T cell lines, CEM and MOLT-3. Voltage dependence of activation and inactivation of Kv1.3 current were shifted up to by 15 mV t...
In this study, we present patch-clamp characterization of the background potassium current in human ...
In this study, we present patch-clamp characterization of the background potassium current in human ...
The membrane potential of human T cells is regulated by two potassium channels: the voltage-gated Kv...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
Using the patch-clamp technique, we have identified two types of Ca(2+)-activated K+ (K(Ca)) channel...
Using the patch-clamp technique, we have identified two types of Ca(2+)-activated K+ (K(Ca)) channel...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
AbstractT cells express two different types of voltage-independent Ca2+-activated K+ channels with s...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
In this study, we present patch-clamp characterization of the background potassium current in human ...
In this study, we present patch-clamp characterization of the background potassium current in human ...
The membrane potential of human T cells is regulated by two potassium channels: the voltage-gated Kv...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
<p>Activation of resting T cells relies on sustained Ca<sup>2+</sup> influx across the plasma membra...
Using the patch-clamp technique, we have identified two types of Ca(2+)-activated K+ (K(Ca)) channel...
Using the patch-clamp technique, we have identified two types of Ca(2+)-activated K+ (K(Ca)) channel...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
AbstractT cells express two different types of voltage-independent Ca2+-activated K+ channels with s...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
Ca(2+)-activated K+[K(Ca)] channels in resting and activated human peripheral blood T lymphocytes we...
In this study, we present patch-clamp characterization of the background potassium current in human ...
In this study, we present patch-clamp characterization of the background potassium current in human ...
The membrane potential of human T cells is regulated by two potassium channels: the voltage-gated Kv...