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首页> 外文期刊>American Journal of Physiology >Enhanced sodium-dependent extrusion of magnesium in mutant cells established from a mouse renal tubular cell line.
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Enhanced sodium-dependent extrusion of magnesium in mutant cells established from a mouse renal tubular cell line.

机译:从小鼠肾小管细胞系建立的突变细胞中镁的钠依赖性挤压增强。

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To study the regulatory mechanisms of intracellular Mg(2+) concentration ([Mg(2+)](i)) in renal tubular cells as well as in other cell types, we established a mutant strain of mouse renal cortical tubular cells that can grow in culture media with very high extracellular Mg(2+) concentrations ([Mg(2+)](o) > 100 mM: 101Mg-tolerant cells). [Mg(2+)](i) was measured with a fluorescent indicator furaptra (mag-fura 2) in wild-type and 101Mg-tolerant cells. The average level of [Mg(2+)](i) in the 101Mg-tolerant cells was kept lower than that in the wild-type cells either at 51 mM or 1 mM [Mg(2+)](o). When [Mg(2+)](o) was lowered from 51 to 1 mM, the decrease in [Mg(2+)](i) was significantly faster in the 101Mg-tolerant cells than in the wild-type cells. These differences between the 101Mg-tolerant cells and the wild-type cells were abolished in the absence of extracellular Na(+) or in the presence of imipramine, a known inhibitor of Na(+)/Mg(2+) exchange. We conclude that Na(+)-dependent Mg(2+) transport activity is enhanced in the 101Mg-tolerant cells. The enhanced Mg(2+) extrusion may prevent [Mg(2+)](i) increase to higher levels and may be responsible for the Mg(2+) tolerance.
机译:为了研究肾小管细胞以及其他细胞类型中细胞内Mg(2+)浓度([Mg(2 +)](i))的调控机制,我们建立了小鼠肾皮质肾小管细胞突变株生长在具有非常高的细胞外Mg(2+)浓度([Mg(2 +)](o)> 100 mM:101Mg耐受细胞)的培养基中。 [Mg(2 +)](i)是在野生型和101Mg耐受细胞中用荧光指示剂furaptra(mag-fura 2)测量的。耐受101Mg的细胞中[Mg(2 +)](i)的平均水平保持低于野生型细胞中51mM或1mM [Mg(2 +)](o)的水平。当[Mg(2 +)](o)从51 mM降低到1 mM时,[Mg(2 +)](i)的降低在101Mg耐受细胞中比在野生型细胞中明显更快。在不存在细胞外Na(+)或存在已知的Na(+)/ Mg(2+)交换抑制剂丙咪嗪的情况下,将消除101Mg耐受细胞和野生型细胞之间的这些差异。我们得出的结论是,依赖Na(+)的Mg(2+)转运活性在101Mg耐受细胞中得到增强。增强的Mg(2+)挤出可以防止[Mg(2 +)](i)增加到更高的水平,并且可能对Mg(2+)的耐受性负责。

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