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镁作为一种调节性阳离子:标准与评估

Magnesium as a regulatory cation: criteria and evaluation.

作者信息

Grubbs R D, Maguire M E

出版信息

Magnesium. 1987;6(3):113-27.

PMID:3306178
Abstract

Of the two major intracellular divalent cations, Ca2+ has been studied much more extensively than Mg2+ and is now well accepted as a major intracellular regulator. This review focuses instead on some recent advances in the understanding of the physiology and biochemistry of Mg2+. For purposes of discussion, four criteria have been developed that should be fulfilled if Mg2+ is to be accepted as an important intracellular regulatory cation: cellular processes must exist which are sensitive to free Mg2+ within the physiological concentration range; a (transport) mechanism(s) must exist which is capable of altering free Mg2+ concentration within a cell; if Mg2+ is compartmented within cells, any potentially regulated system or process and any change in intracellular free Mg2+ concentration must be shown to occur within the same compartment; and any change(s) in free Mg2+ concentration and any alteration(s) in a Mg2+-sensitive process must occur in a sequential manner. These criteria are largely but not completely met at the present time. Criteria 1 and probably 2 can be shown in at least some systems to be fully met. Criteria 3 and 4 are partially met but neither can be fully examined until methods for measuring intracellular free Mg2+ concentrations on an appropriate time scale are further developed. Thus, there exists strong but as yet incomplete evidence that Mg2+, like Ca2+, can play an active, regulatory role within cells. Finally, it is suggested that Ca2+ plays the specific role of the acute, transient regulatory element while Mg2+ plays the complementary role of a more long-term regulatory element which controls the set point or gain of a system or process.

摘要

在两种主要的细胞内二价阳离子中,人们对Ca2+的研究比对Mg2+广泛得多,并且现在Ca2+已被广泛接受为主要的细胞内调节因子。相反,本综述重点关注在Mg2+生理学和生物化学理解方面的一些最新进展。为便于讨论,已制定了四条标准,如果Mg2+要被接受为重要的细胞内调节阳离子,这些标准应得到满足:必须存在对生理浓度范围内的游离Mg2+敏感的细胞过程;必须存在能够改变细胞内游离Mg2+浓度的(运输)机制;如果Mg2+在细胞内被分隔,任何潜在的受调节系统或过程以及细胞内游离Mg2+浓度的任何变化都必须显示发生在同一隔室内;游离Mg2+浓度的任何变化以及Mg2+敏感过程的任何改变都必须以连续的方式发生。目前,这些标准在很大程度上但并非完全得到满足。标准1以及可能的标准2至少在某些系统中可以证明是完全满足的。标准3和标准4部分得到满足,但在进一步开发在适当时间尺度上测量细胞内游离Mg2+浓度的方法之前,这两个标准都无法得到充分检验。因此,有强有力但尚不完整的证据表明,Mg2+与Ca2+一样,可以在细胞内发挥积极的调节作用。最后,有人提出,Ca2+发挥急性、瞬时调节元件的特定作用,而Mg2+发挥更长期调节元件的互补作用,后者控制系统或过程的设定点或增益。

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