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瞬时受体电位褪黑素7离子通道调节血管平滑肌细胞中的镁稳态:血管紧张素II的作用

Transient receptor potential melastatin 7 ion channels regulate magnesium homeostasis in vascular smooth muscle cells: role of angiotensin II.

作者信息

He Ying, Yao Guoying, Savoia Carmine, Touyz Rhian M

机构信息

CIHR Multidisciplinary Research Group on Hypertension, Clinical Research Institute of Montreal, Canada.

出版信息

Circ Res. 2005 Feb 4;96(2):207-15. doi: 10.1161/01.RES.0000152967.88472.3e. Epub 2004 Dec 9.

Abstract

Magnesium modulates vascular smooth muscle cell (VSMC) function. However, molecular mechanisms regulating VSMC Mg2+ remain unknown. Using biochemical, pharmacological, and genetic tools, the role of transient receptor potential membrane melastatin 7 (TRPM7) cation channel in VSMC Mg2+ homeostasis was evaluated. Rat, mouse, and human VSMCs were studied. Reverse transcriptase polymerase chain reaction and immunoblotting demonstrated TRPM7 presence in VSMCs (membrane and cytosol). Angiotensin II (Ang II) and aldosterone increased TRPM7 expression. Gene silencing using small interfering RNA (siRNA) against TRPM7, downregulated TRPM7 (mRNA and protein). Basal [Mg2+]i, measured by mag fura-2AM, was reduced in siRNA-transfected cells (0.39+/-0.01 mmol/L) versus controls (0.54+/-0.01 mmol/L; P<0.01). Extracellular Mg2+ dose-dependently increased [Mg2+]i in control cells (Emax 0.70+/-0.02 mmol/L) and nonsilencing siRNA-transfected cells (Emax 0.71+/-0.04 mmol/L), but not in siRNA-transfected cells (Emax 0.5+/-0.01 mmol/L). The functional significance of TRPM7 was evaluated by assessing [Mg2+]i and growth responses to Ang II in TRPM7 knockdown cells. Acute Ang II stimulation decreased [Mg2+]i in control and TRPM7-deficient cells in a Na+-dependent manner. Chronic stimulation increased [Mg2+]i in control, but not in siRNA-transfected VSMCs. Ang II-induced DNA and protein synthesis, measured by 3[H]-thymidine and 3[H]-leucine incorporation, respectively, were increased in control and nonsilencing cells, but not in TRPM7 knockdown VSMCs. Our data indicate that VSMCs possess membrane-associated, Ang II-, and aldosterone-regulated TRPM7 channels, which play a role in regulating basal [Mg2+]i, transmembrane Mg2+ transport and DNA and protein synthesis. These novel findings identify TRPM7 as a functionally important regulator of Mg2+ homeostasis and growth in VSMCs.

摘要

镁可调节血管平滑肌细胞(VSMC)的功能。然而,调节VSMC中镁离子(Mg2+)的分子机制仍不清楚。我们使用生化、药理学和遗传学工具,评估了瞬时受体电位膜褪黑素7(TRPM7)阳离子通道在VSMC镁离子稳态中的作用。我们研究了大鼠、小鼠和人类的VSMC。逆转录聚合酶链反应和免疫印迹法证明VSMC(细胞膜和细胞质)中存在TRPM7。血管紧张素II(Ang II)和醛固酮可增加TRPM7的表达。使用针对TRPM7的小干扰RNA(siRNA)进行基因沉默,可下调TRPM7(mRNA和蛋白质)。通过镁荧光素-2AM测量,与对照组(0.54±0.01 mmol/L;P<0.01)相比,转染siRNA的细胞中基础细胞内镁离子浓度([Mg2+]i)降低(0.39±0.01 mmol/L)。细胞外镁离子以剂量依赖的方式增加对照组细胞(最大效应值Emax为0.70±0.02 mmol/L)和转染非沉默siRNA的细胞(Emax为0.71±0.04 mmol/L)中的[Mg2+]i,但不增加转染siRNA的细胞中的[Mg2+]i(Emax为0.5±0.01 mmol/L)。通过评估TRPM7基因敲低细胞中的[Mg2+]i和对Ang II的生长反应,来评估TRPM7的功能意义。急性Ang II刺激以钠依赖的方式降低对照组和TRPM7缺陷细胞中的[Mg2+]i。慢性刺激增加对照组细胞中的[Mg2+]i,但不增加转染siRNA的VSMC中的[Mg2+]i。分别通过3[H]-胸腺嘧啶核苷和3[H]-亮氨酸掺入法测量,Ang II诱导的DNA和蛋白质合成在对照组和转染非沉默siRNA的细胞中增加,但在TRPM7基因敲低的VSMC中不增加。我们的数据表明,VSMC具有与膜相关的、受Ang II和醛固酮调节的TRPM7通道,这些通道在调节基础[Mg2+]i、跨膜镁离子转运以及DNA和蛋白质合成中发挥作用。这些新发现确定TRPM7是VSMC中镁离子稳态和生长的重要功能调节因子。

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