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马血浆中游离镁离子(Mg2+)和游离锌离子(Zn2+)的浓度。

The concentrations of free Mg2+ and free Zn2+ in equine blood plasma.

作者信息

Magneson G R, Puvathingal J M, Ray W J

出版信息

J Biol Chem. 1987 Aug 15;262(23):11140-8.

PMID:2956262
Abstract

The enzyme phosphoglucomutase can be used as a metal ion indicator to measure the concentrations of free Mg2+ and free Zn2+ in physiological fluids. In horse plasma, the concentration of free Mg2+ is close to 0.5 mM, whereas that of free Zn2+ is about 2 X 10(-10) M, although numerous physiological roles for Zn2+ have been postulated that would require free Zn2+ concentration orders of magnitude higher than this. A titration of plasma with Zn2+ shows that the fractional increase in free Zn2+ is essentially the same as the fractional increase in total exchangeable Zn2+, and the results are consistent with a model in which essentially all of the Zn2+ in plasma is bound to albumin. Regardless of the model, the buffering capacity of plasma for free Zn2+ is intrinsically low; however, its capacity relative to the total (exchangeable) Zn2+ present is maximal. The implications of this type of buffering for homeostasis of plasma Zn2+ are considered. Treatment of plasma with a strong reducing agent such as dithiothreitol (0.1 mM) substantially increases the apparent binding of Zn2+ and thus reduces the free Zn2+ concentration. However, the concentration of free Zn2+ appears to be insensitive to decreases in the physiological concentrations of reduced glutathione and cysteine. The concentrations of free Zn2+ and free Mg2+ in plasma are similar to those that have been reported for muscle tissue (rabbit). Their ratio is about 4 X 10(-7). The physiological implications of these concentrations are considered. In some cases, if the Zn2+ and Mg2+ complexes of an uncharacterized vertebrate protein exhibit significantly different properties, their relative importance under physiological conditions can be approximated by evaluating those of the mixed complexes present in a solution that contains the physiological concentration of free Mg2+, plus Zn2+ buffered with histidine, at the appropriate pH and ionic strength. Other metal ion/chelon systems that come close to reproducing the concentrations of free Mg2+ and free Zn2+ in horse plasma also are considered.

摘要

磷酸葡萄糖变位酶可作为一种金属离子指示剂,用于测量生理体液中游离Mg2+和游离Zn2+的浓度。在马血浆中,游离Mg2+的浓度接近0.5 mM,而游离Zn2+的浓度约为2×10(-10) M,尽管已经推测出锌离子有许多生理作用,而这些作用所需的游离锌离子浓度要比这个值高几个数量级。用Zn2+滴定血浆表明,游离Zn2+的分数增加与总可交换Zn2+的分数增加基本相同,结果与一个模型一致,即血浆中基本上所有的Zn2+都与白蛋白结合。无论采用何种模型,血浆对游离Zn2+的缓冲能力本质上都很低;然而,相对于存在的总(可交换)Zn2+而言,其缓冲能力是最大的。本文考虑了这种缓冲作用对血浆Zn2+稳态的影响。用强还原剂如二硫苏糖醇(0.1 mM)处理血浆会显著增加Zn2+的表观结合,从而降低游离Zn2+的浓度。然而,游离Zn2+的浓度似乎对还原型谷胱甘肽和半胱氨酸生理浓度的降低不敏感。血浆中游离Zn2+和游离Mg2+的浓度与已报道的肌肉组织(兔)中的浓度相似。它们的比值约为4×10(-7)。本文考虑了这些浓度的生理意义。在某些情况下,如果一种未表征的脊椎动物蛋白质的Zn2+和Mg2+复合物表现出显著不同的性质,可以通过评估在含有生理浓度的游离Mg2+加上用组氨酸缓冲的Zn2+、处于适当pH和离子强度的溶液中存在的混合复合物的性质,来近似它们在生理条件下的相对重要性。还考虑了其他接近马血浆中游离Mg2+和游离Zn2+浓度的金属离子/螯合剂系统。

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