DISTINCT METAL-ION BINDING-SITES ON CA-2+-ACTIVATED K+ CHANNELS IN INSIDE-OUT PATCHES OF HUMAN ERYTHROCYTES

被引:29
作者
LEINDERS, T [1 ]
VANKLEEF, RGDM [1 ]
VIJVERBERG, HPM [1 ]
机构
[1] UNIV UTRECHT, TOXICOL RES INST, POB 80176, 3508 TD UTRECHT, NETHERLANDS
关键词
CALCIUM ION-ACTIVATED POTASSIUM ION CHANNEL; POTASSIUM ION CHANNEL; CALCIUM; CADMIUM; LEAD; MAGNESIUM; PATCH CLAMP; HEAVY METAL; ERYTHROCYTE; (HUMAN);
D O I
10.1016/0005-2736(92)90256-L
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Effects of Cd2+, Co2+, Pb2+, Fe2+ and Mg2+ (1-100 muM) on single-channel properties of the intermediate conductance Ca2+-activated K+ (CaK) channels were investigated in inside-out patches of human erythrocytes in a physiological K+ gradient. Cd2+, Co2+ and Pb2+, but not Fe2+ and Mg2+, were able to induce CaK channel openings. The potency of the metals to open CaK channels in human erythrocytes follows the sequence Pb2+, Cd2+ > Ca2+ greater-than-or-equal-to Co2+ much greater than Mg2+, Fe2+. At higher concentrations Pb2+, Cd2+ and Co2+ block the CaK channel by reducing the opening frequency and the single-channel current amplitude. The potency of the metals to reduce CaK channel opening frequency follows the sequence Pb2+ > Cd2+, Co2+ much greater than Ca2+, which differs from the potency sequence Cd2+ > Pb2+, Co2+ much greater than Ca2+ to reduce the unitary single-channel current amplitude. Fe2+ reduced the channel opening frequency and enhanced the two open times of CaK channels activated by Ca2+, whereas up to 100 muM Mg2+ had no effect on any of the measured single-channel parameters. It is concluded that the activation of CaK channels of human erythrocytes by various metal ions occurs through an interaction with the same regulatory site at which Ca2+ activates these channels. The different potency orders for the activating and blocking effects suggest the presence of at least one activation and two blocking sites. A modulatory binding site for Fe2+ exists as well. In addition, the CaK channels in human erythrocytes are distinct from other subtypes of Ca2+-activated K+ channels in their sensitivity to the metal ions.
引用
收藏
页码:75 / 82
页数:8
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