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心脏ATP敏感性钾通道的表面电荷与特性

Surface charge and properties of cardiac ATP-sensitive K+ channels.

作者信息

Deutsch N, Matsuoka S, Weiss J N

机构信息

UCLA Cardiovascular Research Laboratory, Department of Anesthesia and Medicine (Cardiology) 90024.

出版信息

J Gen Physiol. 1994 Oct;104(4):773-800. doi: 10.1085/jgp.104.4.773.

Abstract

ATP-sensitive K+ (KATP) channels are present in a wide variety of tissues. The sensitivity of these channels to closure by cytosolic ATP (ATPi) varies significantly among different tissues and even within the same tissue. The purpose of this study was to test the hypothesis that negative surface charges modulate the sensitivity of the KATP channels to ATPi by influencing surface potential in the vicinity of the ATP-binding site(s) of the channel. Unitary currents through KATP channels were measured in inside-out membrane patches excised from rabbit ventricular myocytes using the patch-clamp technique. Agents known to be effective at screening negative surface charges were applied to the cytosolic surface of the patches, and their effects on ATP sensitivity were examined. These agents included Mg2+ (2-15 mM), Ba2+ (2-10 mM), and the polycations protamine (0.01-10 microM), poly-L-lysine (500 microM), and poly-L-arginine (0.5 microM). The divalent cations and the various polycations all dramatically reduced the concentration of ATPi required to half-maximally suppress current through KATP channels (Kd), from approximately 100 microM in the absence of these agents to 1.6-8 microM in their presence. The effects were dose dependent. Protamine also reduced the sensitivity of KATP channels to block by cytosolic ADP. The sensitivity of KATP channels to block by ATP was independent of membrane potential, suggesting that the ATP-binding site is not located within the transmembrane voltage field. The effects of the polycation poly-L-lysine on ATP sensitivity were also independent of membrane potential or the direction (inward or outward) of current through KATP channels. In addition to increasing ATP sensitivity, Mg2+, Ba2+, and the polycations all caused dose-dependent block of inward and outward currents through KATP channels over similar concentration ranges as their effects on ATP sensitivity. The block of inward current by polycations was not associated with reduction of single-channel conductance or evidence of fast open channel block. However, the polycations did cause a modest reduction in single-channel conductance of outward current. These results are consistent with the presence of negative surface charges that reduce the local ATP concentration at the ATP-binding site(s) on the channel, relative to the bulk cytosolic ATP concentration. Screening these negative surface charges with divalent cations or polycations decreases the local ATP gradient, resulting in a decrease in the apparent Kd for ATP.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

ATP敏感性钾离子(KATP)通道存在于多种组织中。这些通道对胞质ATP(ATPi)介导的关闭的敏感性在不同组织之间甚至在同一组织内都有显著差异。本研究的目的是检验以下假设:负表面电荷通过影响通道ATP结合位点附近的表面电位来调节KATP通道对ATPi的敏感性。使用膜片钳技术在从兔心室肌细胞分离的内向外膜片中测量通过KATP通道的单通道电流。将已知能有效屏蔽负表面电荷的试剂施加到膜片的胞质表面,并检测它们对ATP敏感性的影响。这些试剂包括Mg2+(2 - 15 mM)、Ba2+(2 - 10 mM)以及多阳离子鱼精蛋白(0.01 - 10 μM)、聚-L-赖氨酸(500 μM)和聚-L-精氨酸(0.5 μM)。二价阳离子和各种多阳离子均显著降低了半最大抑制KATP通道电流(Kd)所需的ATPi浓度,从无这些试剂时的约100 μM降至存在这些试剂时的1.6 - 8 μM。这些效应呈剂量依赖性。鱼精蛋白还降低了KATP通道对胞质ADP阻断的敏感性。KATP通道对ATP阻断的敏感性与膜电位无关,这表明ATP结合位点不在跨膜电压场中。多阳离子聚-L-赖氨酸对ATP敏感性的影响也与膜电位或通过KATP通道的电流方向(内向或外向)无关。除了增加ATP敏感性外,Mg2+、Ba2+和多阳离子在与它们对ATP敏感性相似的浓度范围内均引起通过KATP通道的内向和外向电流的剂量依赖性阻断。多阳离子对内向电流的阻断与单通道电导的降低或快速开放通道阻断的证据无关。然而,多阳离子确实使外向电流的单通道电导适度降低。这些结果与存在负表面电荷一致,相对于胞质总体ATP浓度,这些负表面电荷降低了通道上ATP结合位点处的局部ATP浓度。用二价阳离子或多阳离子屏蔽这些负表面电荷会降低局部ATP梯度,导致ATP的表观Kd降低。(摘要截短至400字)

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