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首页> 外文期刊>The Journal of Physiology >Mechanisms for monovalent cation-dependent depletion of intracellular mg2+:na+-independent mg2+ pathways in Guinea-pig smooth muscle.
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Mechanisms for monovalent cation-dependent depletion of intracellular mg2+:na+-independent mg2+ pathways in Guinea-pig smooth muscle.

机译:豚鼠平滑肌细胞内mg2 +:na +依赖性mg2 +途径单价阳离子依赖性消耗的机制。

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It has been suggested that magnesium deficiency is correlated with many diseases. 31P NMR experiments were carried out in order to investigate the effects of Na+ substitution on Mg2+ depletion in smooth muscle under divalent cation-free conditions. In the taenia of guinea-pig caeci, the intracellular free Mg2+ concentration ([Mg2+]i) was estimated from the chemical shifts of (1) the beta-ATP peak alone and (2) beta- and gamma-ATP peaks. Both estimations indicated that [Mg2+]i decreased only very slowly in Mg2+-free, Ca2+-free solutions in which Na+ was substituted with large cations such as NMDG (N-methyl-D-glucamine) and choline. Furthermore, the measurements of tension development supported the suggestion of preservation of intracellular Mg2+ with NMDG substitution. Substituting extracellular Na+ with the small cation, Li+, also shifted the beta-ATP peak towards a lower frequency, but the frequency shift was significantly less than that seen upon Na+ substitution with K+. The estimated [Mg2+]i depletion was, however, comparable with that seen after Na+ substitution with K+ using the titration curves of metal-free and Mg2+-bound ATP obtained in Li+-based model solutions. It was concluded that Mg2+ rapidly decreases only when small cations were the major electrolyte of the extracellular medium. Na+ substitutions with NMDG, choline or Li+ had little effect on intracellular ATP concentration after 100 min treatment.
机译:已经提出镁缺乏与许多疾病有关。进行31P NMR实验是为了研究在二价无阳离子条件下,Na +取代对平滑肌中Mg2 +耗竭的影响。在豚鼠盲肠的en虫病中,细胞内游离Mg2 +浓度([Mg2 +] i)是根据(1)仅β-ATP峰和(2)β-和γ-ATP峰的化学位移估算的。两种估计均表明,在其中Na +被大阳离子(例如NMDG(N-甲基-D-葡糖胺)和胆碱)取代的无Mg2 +,无Ca2 +的溶液中,[Mg2 +] i仅非常缓慢地降低。此外,张力发展的测量结果支持用NMDG替代保存细胞内Mg2 +的建议。用小阳离子Li +代替细胞外Na +也会使β-ATP峰移向较低的频率,但该频率变化显着小于Na +被K +取代后看到的频率变化。但是,使用在基于Li +的模型溶液中获得的无金属和与Mg2 +结合的ATP的滴定曲线,估计的[Mg2 +] i消耗与在用K +取代Na +后观察到的相当。可以得出结论,只有当小阳离子是细胞外介质的主要电解质时,Mg2 +才会快速降低。用NMDG,胆碱或Li +取代Na +对100分钟处理后的细胞内ATP浓度影响很小。

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