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首页> 外文期刊>American Journal of Physiology >Sensitivity of TRPM7 channels to Mg~(2+) characterized in cell-free patches of Jurkat T lymphocytes
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Sensitivity of TRPM7 channels to Mg~(2+) characterized in cell-free patches of Jurkat T lymphocytes

机译:以Jurkat T淋巴细胞无细胞斑块为特征的TRPM7通道对Mg〜(2+)的敏感性

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Transient receptor potential melastatin 7 (TRPM7) channels were originally identified electrophysiologically when depletion of cytoso-lic Mg~(2+) resulted in the gradual development of an outwardly rectifying cation current. Conversely, inclusion of millimolar Mg~(2+) in internal solutions prevented activation of these channels in whole cell patch clamp. We recently demonstrated that the Jurkat T-cell whole cell TRPM7 channels are inhibited by internal Mg~(2+) in a biphasic manner, displaying high [IC_(50(1)) approch= 10 muM] and low [IC_(50(2)) approch= 165 muM] affinity inhibitor sites. In that study, we had characterized the dependence of the maximum cell current density on intracellular Mg~(2+) concentration. To characterize Mg~(2+) inhibition in Jurkat T cells in more detail and compare it to whole cell results, we recorded single TRPM7 channels in cell-free membrane patches and investigated the dependence of their activity on Mg~(2+) added on the cyto-plasmic side. We systematically varied free Mg~(2+) from 265 nM to 407 muM and evaluated the extent of channel inhibition in inside-out patch for 58 patches. We found that the TRPM7 channel shows two conductance levels of 39.0 pS (71) and 18.6 pS (72) and that both are reversibly inhibited by internal Mg~(2+). The 39.0-pS conductance is the dominant state of the channel, observed most frequently in this recording configuration. The dose-response relation in inside-out patches shows a steeper Mg~(2+) dependence than in whole cell, yielding IC_(50(1)) of 25.1 muM and IIC_(50(2)) of 91.2 muM.. Single-channel analysis shows that the primary effect of Mg~(2+) in multichannel patches is a reversible reduction of the number of conducting channels (N_o). Additionally, at high Mg~(2+) concentrations, we observed a saturating 20% reduction in unitary conductance (71). Thus Mg~(2+) inhibition in whole cell can be explained by a drop in individual participating channels and a modest reduction in conductance. We also found that TRPM7 channels in some patches were not sensitive to this ion at submaximal Mg~(2+) concentrations. Interestingly, Mg~(2+) inhibition showed the property of use dependence: with repeated applications, Mg~(2+) effect became gradually more potent, which suggests that Mg~(2+) sensitivity of the channel is a dynamic characteristic that depends on other membrane factors.
机译:当细胞质Mg〜(2+)耗竭导致向外整流的阳离子电流逐渐发展时,瞬时电势性褪黑素7(TRPM7)通道最初是通过电生理学鉴定的。相反,内部溶液中包含毫摩尔Mg〜(2+)阻止了整个细胞膜片钳中这些通道的激活。我们最近证明,Jurkat T细胞全细胞TRPM7通道以双相方式被内部Mg〜(2+)抑制,显示出高[IC_(50(1))接近= 10μM]和低[IC_(50( 2))大约= 165μM]亲和抑制剂位点。在该研究中,我们表征了最大细胞电流密度对细胞内Mg〜(2+)浓度的依赖性。为了更详细地描述Jurkat T细胞中Mg〜(2+)的抑制作用并将其与全细胞结果进行比较,我们在无细胞膜片中记录了单个TRPM7通道,并研究了其活性对添加的Mg〜(2+)的依赖性在细胞质方面。我们系统地将游离Mg〜(2+)从265 nM改变为407μM,并评估了由内而外的补丁中58个补丁的通道抑制程度。我们发现TRPM7通道显示两个电导水平分别为39.0 pS(71)和18.6 pS(72),并且都被内部Mg〜(2+)可逆地抑制。 39.0-pS电导是通道的主导状态,在此记录配置中最常观察到。由内而外的贴片中的剂量反应关系显示比整个细胞中的Mg〜(2+)依赖性更强,产生的IC_(50(1))为25.1μM,IIC_(50(2))为91​​.2μM。通道分析表明,Mg〜(2+)在多通道贴片中的主要作用是导电通道数量(N_o)的可逆减少。此外,在高Mg〜(2+)浓度下,我们观察到单位电导饱和降低了20%(71)。因此,整个细胞中的Mg〜(2+)抑制作用可以通过单个参与通道的减少和电导的适度降低来解释。我们还发现,在低于最大Mg〜(2+)浓度时,某些补丁中的TRPM7通道对该离子不敏感。有趣的是,Mg〜(2+)抑制表现出使用依赖性:随着重复应用,Mg〜(2+)效应逐渐增强,这表明该通道的Mg〜(2+)敏感性是一种动态特性,取决于其他膜因素。

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