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心脏中镁离子转运的激素调控

Hormonal control of Mg2+ transport in the heart.

作者信息

Romani A, Scarpa A

机构信息

Department of Physiology and Biophysics, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106.

出版信息

Nature. 1990 Aug 30;346(6287):841-4. doi: 10.1038/346841a0.

Abstract

Magnesium is abundant in the mammalian body and the second most abundant cation in cells. Because the concentration of intracellular free Mg2+ is relatively high (0.2-1 mM), Mg2+ is unlikely to act as a second messenger, like Ca2+, by rapidly changing its cytosolic concentration. But changes in Mg2+ do have profound effects on cellular metabolism, structure and bioenergetics. Key enzymes or metabolic pathways, mitochondrial ion transport, Ca2+ channel activities in the plasma membrane and intracellular organelles, ATP-requiring reactions, and structural properties of cells and nucleic acids are modified by changes in Mg2+ concentration. Yet, although some information is available from giant cells and bacteria, little is known about the regulation of intracellular Mg2+ in mammalian cells. Here we report a new transport mechanism for Mg2+ across the sarcolemma of cardiac cells in both intact hearts and dissociated myocytes. We show that noradrenaline, through beta-adrenergic stimulation and increase of cyclic AMP, stimulates a large efflux of Mg2+ from cardiac cells. This transport is of major dimensions and can move up to 20% of total cellular Mg2+ within a few minutes.

摘要

镁在哺乳动物体内含量丰富,是细胞中第二丰富的阳离子。由于细胞内游离镁离子(Mg2+)的浓度相对较高(0.2 - 1毫摩尔),Mg2+不太可能像钙离子(Ca2+)那样通过迅速改变其胞质浓度来充当第二信使。但是Mg2+的变化确实对细胞代谢、结构和生物能量学有深远影响。关键酶或代谢途径、线粒体离子转运、质膜和细胞内细胞器中的Ca2+通道活性、需要ATP的反应以及细胞和核酸的结构特性都会因Mg2+浓度的变化而改变。然而,尽管从巨细胞和细菌中已获得一些信息,但关于哺乳动物细胞内Mg2+的调节知之甚少。在此,我们报告了一种在完整心脏和分离的心肌细胞中Mg2+跨心肌细胞膜的新转运机制。我们发现,去甲肾上腺素通过β - 肾上腺素能刺激和环磷酸腺苷(cAMP)的增加,刺激心肌细胞大量释放Mg2+。这种转运规模很大,在几分钟内可使细胞内总Mg2+的20%转移。

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