首页> 外文期刊>American Journal of Physiology >Intracellular Mg2+ regulates ADP phosphorylation and adenine nucleotide synthesis in human erythrocytes.
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Intracellular Mg2+ regulates ADP phosphorylation and adenine nucleotide synthesis in human erythrocytes.

机译:细胞内Mg2 +调节人红细胞中的ADP磷酸化和腺嘌呤核苷酸合成。

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摘要

13C- and 31P-NMR were used in methylene blue-treated human erythrocytes to determine the dependence on intracellular Mg2+ concentration ([Mg2+]i) of the pentose phosphate pathway (PPP), the glycolytic pathway, and adenine nucleotide synthesis. The PPP flux had an [Mg2+]i at half-maximal velocity ([Mg2+]i,0.5) of 0.02 mM, well below the physiological range (0.2-0.7 mM). Flux through the PPP was reduced at higher [Mg2+]i as flux through phosphofructokinase was increased ([Mg2+]i,0.5 = 0.16 mM). [Mg2+]i,0.5 of phosphoglycerate kinase flux, which equals net ADP phosphorylation rate, was 0.27 mM, well within the physiological [Mg2+]i range. The rate of adenine nucleotide synthesis from [2-13C]glucose-derived ribose 5-phosphate and exogenous adenine also exhibited dependence on [Mg2+]i but was not saturable up to 1.6 mM. Therefore, net flux through the PPP and glycolytic pathways in erythrocytes is not strongly dependent on [Mg2+]i at physiological ion concentrations, but both ADP phosphorylation and adenine nucleotide synthesis are likely to be regulated by normal fluctuations in [Mg2+]i.
机译:13 C-和31 P-NMR用于亚甲基蓝处理的人红细胞中,以确定对戊糖磷酸途径(PPP),糖酵解途径和腺嘌呤核苷酸合成的细胞内Mg2 +浓度([Mg2 +] i)的依赖性。 PPP通量的半最大速度下的[Mg2 +] i([Mg2 +] i,0.5)为0.02 mM,远低于生理范围(0.2-0.7 mM)。通过PPP的通量在更高的[Mg2 +] i时降低,因为通过磷酸果糖激酶的通量增加([Mg2 +] i,0.5 = 0.16 mM)。磷酸甘油酸酯激酶通量的[Mg2 +] i,0.5(等于净ADP磷酸化率)为0.27 mM,完全在生理[Mg2 +] i范围内。由[2-13C]葡萄糖衍生的核糖5-磷酸和外源性腺嘌呤合成腺嘌呤核苷酸的速率也显示出对[Mg2 +] i的依赖性,但在达到1.6mM时不饱和。因此,在生理离子浓度下,红细胞中通过PPP和糖酵解途径的净通量并不强烈依赖[Mg2 +] i,但是[Mg2 +] i的正常波动可能会调节ADP磷酸化和腺嘌呤核苷酸的合成。

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