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一种在钠钙交换和钠通道电流研究中直接将磷脂应用于巨大切除膜片的新方法。

A novel method for direct application of phospholipids to giant excised membrane patches in the study of sodium-calcium exchange and sodium channel currents.

作者信息

Collins A, Hilgemann D W

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas 75235-9040.

出版信息

Pflugers Arch. 1993 Jun;423(5-6):347-55. doi: 10.1007/BF00374927.

Abstract

Effects of membrane phospholipids on Na(+)-Ca2+ exchange and Na+ channel currents were studied in giant excised cardiac sarcolemmal patches. Phospholipids were suspended in an inert vehicle of alpha-tocopherol acetate and hexane and were then directly applied to the side of patch electrodes at a short distance from the tip during current recording. Phosphatidylserine strongly stimulated outward Na(+)-Ca2+ exchange current and altered the kinetics of cytoplasmic Na(+)- and Ca(2+)-dependent secondary modulation. This effect was partially reversed by phosphatidylcholine. Prolonged treatment with phosphatidylserine eliminated the inactivation transient normally observed upon rapid application of cytoplasmic Na+ but left cytoplasmic Ca2+ dependence largely intact. In such cases, subsequent chymotrypsin treatment removed cytoplasmic Ca2+ dependence, but had no further stimulatory effect, indicating maximum alleviation of inactivation by phosphatidylserine. While these results indicate that phosphatidylserine acts on a cytoplasmic, protease-sensitive regulatory domain of the exchanger, phosphatidylserine also stimulated the exchange current after deregulation by chymotrypsin, indicating an effect on the exchange mechanism itself. As in other myocyte preparations, cardiac Na+ currents in giant patches undergo a time-dependent negative shift in the voltage dependence of steady-state inactivation. Loss of phosphatidylserine from the cytoplasmic leaflet (i.e. loss of transbilayer asymmetry of phosphatidylserine distribution) does not appear to be the underlying cause, since phosphatidylserine did not reverse this shift, despite stimulation of Na(+)-Ca2+ exchange current in the same patches.

摘要

在巨大的离体心肌肌膜片上研究了膜磷脂对Na(+)-Ca2+交换和Na+通道电流的影响。将磷脂悬浮于醋酸α-生育酚和己烷的惰性载体中,然后在电流记录期间将其直接施加到距离尖端短距离的膜片电极一侧。磷脂酰丝氨酸强烈刺激外向Na(+)-Ca2+交换电流,并改变细胞质Na(+)和Ca(2+)依赖性二级调节的动力学。磷脂酰胆碱可部分逆转这种作用。用磷脂酰丝氨酸长期处理消除了快速施加细胞质Na+时通常观察到的失活瞬变,但细胞质Ca2+依赖性基本保持完整。在这种情况下,随后的胰凝乳蛋白酶处理消除了细胞质Ca2+依赖性,但没有进一步的刺激作用,表明磷脂酰丝氨酸对失活的最大缓解作用。虽然这些结果表明磷脂酰丝氨酸作用于交换器的细胞质、蛋白酶敏感的调节结构域,但磷脂酰丝氨酸在胰凝乳蛋白酶解除调节后也刺激了交换电流,表明对交换机制本身有影响。与其他心肌细胞制剂一样,巨大膜片中的心脏Na+电流在稳态失活的电压依赖性方面经历时间依赖性负移。细胞质小叶中磷脂酰丝氨酸的丧失(即磷脂酰丝氨酸分布的跨膜不对称性丧失)似乎不是根本原因,因为尽管在相同的膜片中刺激了Na(+)-Ca2+交换电流,但磷脂酰丝氨酸并没有逆转这种移位。

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