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Insights into the molecular nature of magnesium homeostasis.

机译:洞悉镁稳态的分子性质。

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摘要

Magnesium is an important cofactor for many biological processes, such as protein synthesis, nucleic acid stability, or neuromuscular excitability. Extracellular magnesium concentration is tightly regulated by the extent of intestinal absorption and renal excretion. Despite the critical role of magnesium handling, the exact mechanisms mediating transepithelial transport remained obscure. In the past few years, the genetic disclosure of inborn errors of magnesium handling revealed several new proteins along with already known molecules unexpectedly involved in renal epithelial magnesium transport, e.g., paracellin-1, a key player in paracellular magnesium and calcium reabsorption in the thick ascending limb or the gamma-subunit of the Na(+)-K(+)-ATPase in the distal convoluted tubule. In this review, we focus on TRPM6, an ion channel of the "transient receptor potential (TRP) gene family, which, when mutated, causes a combined defect of intestinal magnesium absorption and renal magnesium conservation asobserved in primary hypomagnesemia with secondary hypocalcemia.
机译:镁是许多生物学过程的重要辅助因子,例如蛋白质合成,核酸稳定性或神经肌肉兴奋性。细胞外镁的浓度受肠道吸收和肾脏排泄程度的严格控制。尽管镁处理起着至关重要的作用,但是介导上皮运输的确切机制仍然不清楚。在过去的几年中,遗传性的镁处理错误的遗传学揭示揭示了几种新蛋白,以及与肾脏上皮镁运输意外相关的已知分子,例如paracellin-1,它是厚壁细胞中镁和钙重吸收的关键因素远端弯管中Na(+)-K(+)-ATPase的上升肢或γ-亚基。在这篇综述中,我们关注TRPM6,即“瞬时受体电位(TRP)基因家族的离子通道”,该离子通道发生突变时,会导致肠道镁吸收和肾镁保守性的联合缺陷,如原发性低镁血症和继发性低钙血症所观察到的。

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