Using the patch-clamp whole-cell recording technique, we investigated the influence of external Ca2+, Ba2+, K+, Rb+, and internal Ca2+ on the rate of K+ channel inactivation in the human T lymphocyte-derived cell line, Jurkat E6-1. Raising external Ca2+ or Ba2+, or reducing external K+, accelerated the rate of the K+ current decay during a depolarizing voltage pulse. External Ba2+ also produced a use-dependent block of the K+ channels by entering the open channel and becoming trapped inside. Raising internal Ca2+ accelerated inactivation at lower concentrations than external Ca2+, but increasing the Ca2+ buffering with BAPTA did not affect inactivation. Raising [K+]o or adding Rb+ slowed inactivation by competing with divalent ions. Externa...
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...
Activation of resting T cells relies on sustained Ca2+ influx across the plasma membrane, which in t...
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...
Using the patch-clamp whole-cell recording technique, we investigated the influence of external Ca2+...
Using the patch-clamp whole-cell recording technique, we investigated the influence of external Ca2+...
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...
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...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
The involvement of ion channels in T lymphocyte activation is suggested by reports of membrane depol...
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...
Extracellular potassium modulates recovery from C-type inactivation of Kv1.3 in human T lymphocytes....
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...
Activation of resting T cells relies on sustained Ca2+ influx across the plasma membrane, which in t...
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...
Using the patch-clamp whole-cell recording technique, we investigated the influence of external Ca2+...
Using the patch-clamp whole-cell recording technique, we investigated the influence of external Ca2+...
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...
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...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
Voltage-gated n-type K(V) and Ca(2+)-activated K+ [K(Ca)] channels were studied in cell-attached pat...
The involvement of ion channels in T lymphocyte activation is suggested by reports of membrane depol...
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...
Extracellular potassium modulates recovery from C-type inactivation of Kv1.3 in human T lymphocytes....
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...
Activation of resting T cells relies on sustained Ca2+ influx across the plasma membrane, which in t...
We used whole-cell recording to characterize ion permeation, rectification, and block of monovalent ...