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在一个产生醛固酮的腺瘤中鉴定一种新型的体细胞 KCNJ5 突变 delI157。

Characterization of a novel somatic KCNJ5 mutation delI157 in an aldosterone-producing adenoma.

机构信息

Clinical Pharmacology Unit, Department of Medicine, Addenbrooke's Hospital, Cambridge, UK.

出版信息

J Hypertens. 2012 Sep;30(9):1827-33. doi: 10.1097/HJH.0b013e328356139f.

Abstract

OBJECTIVE

Adrenal aldosterone-producing adenomas (APAs) are an increasingly recognized cause of primary aldosteronism, and somatic mutations within the KCNJ5 gene encoding an inwardly rectifying K(+) channel (also called GIRK4 or Kir3.4) have been identified by several groups including our own. We identified the previously noted G151R and L168R mutations in the region of a selectivity filter of the channel as well as a previously unreported 3-base deletion, delI157. Here, we report the functional properties of KCNJ5 channels carrying this novel delI157 mutation.

METHODS

The delI157 mutation was introduced into wild-type KCNJ5 sequences to allow its expression in both H295R cells and Xenopus oocytes to study its expression and electrophysiology, respectively.

RESULTS

In the adrenal cell line H295R, the delI157 mutant expresses and traffics normally to the cell surface. However, the current-voltage behavior of the mutant in oocytes is distinct from wild-type channels and mimics closely other selectivity filter mutations. In particular, its ability to support substantial current when extracellular K(+) is replaced by Na(+). We also report for the first time that the mutants have reduced sensitivity to the KCNJ5 inhibitor tertiapin-Q that binds to the external vestibule of the channel pore.

CONCLUSION

This novel KCNJ5 mutation behaves like the three selectivity filter mutations previously reported in APAs depolarizing the cell and showing reduced cation selectivity. The reduced sensitivity to tertiapin-Q suggests that the abnormal Na(+) permeability of these selectivity mutations does indeed reflect structural changes around the mouth of the ion channel.

摘要

目的

肾上腺醛固酮产生腺瘤(APAs)是原发性醛固酮增多症的一个日益被认识的原因,我们自己的研究小组和其他几个小组已经确定了编码内向整流钾(K+)通道(也称为 GIRK4 或 Kir3.4)的 KCNJ5 基因中的体细胞突变。我们在通道的选择性过滤器区域发现了先前指出的 G151R 和 L168R 突变,以及以前未报告的 3 个碱基缺失,delI157。在这里,我们报告携带这种新的 delI157 突变的 KCNJ5 通道的功能特性。

方法

将 delI157 突变引入野生型 KCNJ5 序列中,以允许其在 H295R 细胞和非洲爪蟾卵母细胞中表达,分别研究其表达和电生理学特性。

结果

在肾上腺细胞系 H295R 中,delI157 突变体正常表达并向细胞表面运输。然而,突变体在卵母细胞中的电流-电压行为与野生型通道明显不同,并且与其他选择性过滤器突变非常相似。特别是,当细胞外 K+被 Na+取代时,它具有支持大量电流的能力。我们还首次报道了突变体对 KCNJ5 抑制剂 tertiapin-Q 的敏感性降低,tertiapin-Q 结合在通道孔的外部前庭。

结论

这种新的 KCNJ5 突变与以前在 APA 中报道的三个选择性过滤器突变一样,使细胞去极化并表现出降低的阳离子选择性。对 tertiapin-Q 的敏感性降低表明,这些选择性突变的异常 Na+通透性确实反映了离子通道口周围结构的变化。

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