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Detailed examination of Mg2+ and pH sensitivity of human TRPM7 channels

机译:详细检查人类TRPM7通道的Mg2 +和pH敏感性

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摘要

TRPM7 channel kinase is a protein highly expressed in cells of hematopoietic lineage, such as lymphocytes. Studies performed in native and heterologous expression systems have shown that TRPM7 forms nonselective cation channels functional in the plasma membrane and activated on depletion of cellular Mg2+. In addition to internal Mg2+, cytosolic pH and the phospholipid phosphatidylinositol-(,)-bisphosphate [PI(,)P2] are potent physiological regulators of this channel: protons inhibit, while PI(,)P2 is required for TRPM7 channel activity. These channels are also inhibited from inside by other metal cations and polyamines. While the regulation of TRPM7 channels by internal metal ions, acidic pH, and PI(,)P2 is voltage independent, extracellular metal cations and polyamines block voltage dependently at micromolar concentrations and appear to occupy a distinct blocking site. In the present study we investigated intracellular Mg2+ and pH dependence of native TRPM7 currents using whole cell patch-clamp electrophysiology in human Jurkat T lymphocytes and HEK293 cells. Our main findings are 1) Mg2+ inhibition involves not one but two separate sites of high (∼10 μM) and low (∼165 μM) affinity; and 2) while sharing certain characteristics with Mg2+ inhibition, protons most likely inhibit through one inhibitory site, corresponding to the low-affinity Mg2+ site, with an estimated IC50 of pH 6.3. Additionally, we present data on amplitude distribution of preactivated TRPM7 currents in Jurkat T lymphocytes in the absence of prior Mg2+ or proton depletion.
机译:TRPM7通道激酶是在造血谱系细胞(如淋巴细胞)中高度表达的蛋白质。在天然和异源表达系统中进行的研究表明,TRPM7形成在质膜上起作用的非选择性阳离子通道,并在细胞Mg 2 + 耗尽时被激活。除内部Mg 2 + 外,胞浆pH和磷脂酰磷脂酰肌醇-(,)-双磷酸[PI(,)P2]也是该通道的有效生理调节剂:质子抑制,而PI(,) TRPM7通道活动需要P2。这些通道也受到其他金属阳离子和多胺的抑制。虽然内部金属离子,酸性pH值和PI(,)P2对TRPM7通道的调节与电压无关,但细胞外金属阳离子和多胺在微摩尔浓度下仍会阻断电压,并且似乎占据了一个明显的阻断位点。在本研究中,我们使用全细胞膜片钳电生理学研究了人类Jurkat T淋巴细胞和HEK293细胞中天然TRPM7电流的细胞内Mg 2 + 和pH依赖性。我们的主要发现是:1)Mg 2 + 抑制作用不涉及一个,而是两个单独的高(〜10μM)和低(〜165μM)亲和力的位点; 2)质子具有Mg 2 + 抑制的某些特征时,质子最有可能通过一个抑制位点抑制,该抑制位点对应于低亲和力Mg 2 + 位,估计pH值为6.3的IC50。此外,我们还提供了在没有先前Mg 2 + 或质子耗竭的情况下Jurkat T淋巴细胞中预激活的TRPM7电流的幅度分布的数据。

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