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锚蛋白-3 是电压门控钾通道 Kv1.1 的一个新的结合伴侣,参与肾脏镁处理。

Ankyrin-3 is a novel binding partner of the voltage-gated potassium channel Kv1.1 implicated in renal magnesium handling.

机构信息

Department of Physiology, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.

出版信息

Kidney Int. 2014 Jan;85(1):94-102. doi: 10.1038/ki.2013.280. Epub 2013 Jul 31.

Abstract

The voltage-gated potassium channel, Kv1.1, was recently identified as a causative gene in isolated dominant hypomagnesemia. The channel is situated in the distal convoluted tubule, where it participates in maintaining a favorable electrical gradient for driving magnesium ion into the cell through the transient receptor potential melastatin 6 channel. Pull-down experiments coupled to mass spectrometry using the carboxy-terminal domain of Kv1.1 as bait were used in mouse kidney lysates. Ankyrin-3 (ANK3) was identified as a binding partner of Kv1.1 and was enriched in isolated distal convoluted tubules as compared to whole kidney. Electrophysiology studies performed in HEK293 cells expressing Kv1.1 showed that ANK3 significantly inhibited Kv1.1-mediated currents (267 compared to 125 pA/pF) for control and ANK3, respectively. Finally, to evaluate a potential role of ANK3 in magnesium handling, the intrarenal abundance of ANK3 was measured in mice fed a low-, normal-, or high-magnesium diet for 10 days. Mice maintained on high dietary magnesium significantly doubled their fractional urinary excretion of magnesium, which coincided with a 1.8-fold increase in the renal expression of ANK3 compared to mice on a normal- or low-magnesium diet. Thus, our observations demonstrate a novel role for ANK3 in modulating the biophysical properties of Kv1.1. Such regulation appears to be particularly important in conditions of high dietary magnesium.

摘要

电压门控钾通道 Kv1.1 最近被鉴定为孤立显性低镁血症的致病基因。该通道位于远曲小管,在其中参与维持有利于将镁离子通过瞬时受体电位 melastatin 6 通道驱动进入细胞的电梯度。使用 Kv1.1 的羧基末端结构域作为诱饵进行下拉实验并结合质谱法,在小鼠肾裂解物中进行。ankyrin-3 (ANK3) 被鉴定为 Kv1.1 的结合伴侣,与整个肾脏相比,在分离的远曲小管中富集。在表达 Kv1.1 的 HEK293 细胞中进行的电生理学研究表明,ANK3 显著抑制 Kv1.1 介导的电流(分别为 267 和 125 pA/pF)。最后,为了评估 ANK3 在镁处理中的潜在作用,在喂食低、正常或高镁饮食 10 天的小鼠中测量了肾内 ANK3 的丰度。与正常或低镁饮食相比,维持高膳食镁的小鼠其镁的尿排泄分数显著增加了一倍,这与肾脏中 ANK3 的表达增加了 1.8 倍相吻合。因此,我们的观察结果表明 ANK3 在调节 Kv1.1 的生物物理特性方面具有新的作用。这种调节在高膳食镁的情况下似乎尤为重要。

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