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Incorporation of calcium channels from cardiac sarcolemmal membrane vesicles into planar lipid bilayers.

机译:钙离子通道从心脏肌膜膜囊泡进入平面脂质双层。

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摘要

When purified porcine cardiac sarcolemmal membrane vesicles are incorporated into planar lipid bilayers formed at the tip of patch electrode pipettes, individual divalent cation channels can be monitored. Channel activity is increased in the presence of the Ca2+ channel agonist Bay K 8644, is voltage dependent, and selects for divalent cations over anions. The activity does not inactivate because it is maintained during prolonged depolarizations. Determination of divalent cation selectivity from the reversal potential of single-channel currents indicates a relative permeability ratio for Ba/Ca/Mg of 1:0.45:0.08. Mean channel conductance in 0.1 M Ba2+/0.01 M Mg2+ is 8 pS. Channels are reversibly blocked by the Ca2+ channel inhibitor nitrendipine, and inhibition can be competitively antagonized by Bay K 8644. Binding studies with 3H-labeled D-600 demonstrate the presence of high-affinity receptors for D-600 in sarcolemmal membranes (Kd = 6.4 X 10(-9) M; Bmax = 3 pmol per mg of protein). In addition, experiments with resolved D-600 stereoisomers indicate that (-)D-600 is at least 25-fold more potent than (+)D-600 in competing for this aralkyl amine receptor. Consistent with this, (-)D-600 is much more effective than the (+) isomer in inhibiting bilayer-incorporated channels. These results demonstrate that the divalent cation channel that has been reconstituted in planar lipid bilayers possesses many of the characteristics of voltage-regulated Ca2+ channels in heart and suggest that receptors for Ca2+ entry blockers are functionally associated with this channel.
机译:当将纯化的猪心脏肌膜膜囊泡掺入在贴片电极移液器尖端形成的平面脂质双层中时,可以监测各个二价阳离子通道。在Ca2 +通道激动剂Bay K 8644的存在下,通道活性会增加,并且与电压有关,并且会选择阴离子上的二价阳离子。该活性不会失活,因为在长时间的去极化过程中会保持这种活性。由单通道电流的反向电位确定的二价阳离子选择性表明Ba / Ca / Mg的相对磁导率比为1:0.45:0.08。 0.1 M Ba2 + / 0.01 M Mg2 +中的平均通道电导为8 pS。 Ca2 +通道抑制剂尼群地平可逆地阻断通道,Bay K 8644可竞争性拮抗该通道。与3H标记的D-600的结合研究表明,肌膜中存在D-600的高亲和力受体(Kd = 6.4) X 10(-9)M; Bmax = 3 pmol / mg蛋白质)。此外,使用解析出的D-600立体异构体进行的实验表明,(-)D-600在竞争该芳烷基胺受体方面比(+)D-600至少强25倍。与此相一致,(-)D-600在抑制双层结合通道方面比(+)异构体有效得多。这些结果表明,已经在平面脂质双层中重构的二价阳离子通道具有心脏中电压调节的Ca2 +通道的许多特征,并表明Ca2 +进入阻滞剂的受体在功能上与该通道相关。

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