KCNJ10突变与KCNJ16对异聚化表现出不同的敏感性。

Nephron Physiology Pub Date : 2013-01-01 Epub Date: 2013-11-02 DOI:10.1159/000356353
Sophie Parrock, Sofia Hussain, Naomi Issler, Ann-Marie Differ, Nicholas Lench, Stefano Guarino, Michiel J S Oosterveld, Mandy Keijzer-Veen, Eva Brilstra, Hester van Wieringen, A Yvette Konijnenberg, Sarah Amin-Rasip, Simona Dumitriu, Enriko Klootwijk, Nine Knoers, Detlef Bockenhauer, Robert Kleta, Anselm A Zdebik
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引用次数: 35

摘要

背景/目的:内矫正K(+)通道KCNJ10/Kir4.1突变导致常染色体隐性EAST综合征(癫痫、共济失调、感音神经性耳聋和小管病)。KCNJ10在肾远曲小管、内耳血管纹和脑胶质细胞中表达。对临床诊断为EAST综合征的患者进行基因分型,并对KCNJ10基因突变进行功能研究。方法:对患者DNA进行扩增和测序,发现新的突变。克隆了突变型和野生型KCNJ10构建体,并在爪蟾卵母细胞中异源表达。双电极电压箝位法测定全细胞K(+)电流,Western blotting法分析通道表达。结果:我们在KCNJ10中发现了3个纯合突变(p.F75C, p.A167V和p.p v91fs197x),其中p.A167V突变先前报道为复合杂合状态。表达野生型人KCNJ10的卵母细胞表现出向内整流电流,在所有突变体中均显著降低(p < 0.001)。Ba(2+)对KCNJ10电流的特异性抑制仅在p.A167V中显示出较大的残留功能,与致病不相容。然而,与KCNJ16共表达几乎完全取消了这些异质通道的功能。结论:本研究为p.A167V KCNJ10突变的病理生理学提供了一种解释,该突变此前未被认为是单独致病的。这些发现为KCNJ10和KCNJ16的功能协同提供了证据。因此,在体外确定KCNJ10的功能可能需要与KCNJ16共表达。
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KCNJ10 mutations display differential sensitivity to heteromerisation with KCNJ16.

Background/aims: Mutations in the inwardly-rectifying K(+)-channel KCNJ10/Kir4.1 cause autosomal recessive EAST syndrome (epilepsy, ataxia, sensorineural deafness and tubulopathy). KCNJ10 is expressed in the distal convoluted tubule of the kidney, stria vascularis of the inner ear and brain glial cells. Patients diagnosed clinically with EAST syndrome were genotyped and mutations in KCNJ10 were studied functionally.

Methods: Patient DNA was amplified and sequenced, and new mutations were identified. Mutant and wild-type KCNJ10 constructs were cloned and heterologously expressed in Xenopus oocytes. Whole-cell K(+) currents were measured by 2-electrode voltage clamping and channel expression was analysed by Western blotting.

Results: We identified 3 homozygous mutations in KCNJ10 (p.F75C, p.A167V and p.V91fs197X), with mutation p.A167V previously reported in a compound heterozygous state. Oocytes expressing wild-type human KCNJ10 showed inwardly rectified currents, which were significantly reduced in all of the mutants (p < 0.001). Specific inhibition of KCNJ10 currents by Ba(2+) demonstrated a large residual function in p.A167V only, which was not compatible with causing disease. However, co-expression with KCNJ16 abolished function in these heteromeric channels almost completely.

Conclusion: This study provides an explanation for the pathophysiology of the p.A167V KCNJ10 mutation, which had previously not been considered pathogenic on its own. These findings provide evidence for the functional cooperation of KCNJ10 and KCNJ16. Thus, in vitro ascertainment of KCNJ10 function may necessitate co-expression with KCNJ16.

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来源期刊
Nephron Physiology
Nephron Physiology 医学-泌尿学与肾脏学
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审稿时长
>12 weeks
期刊最新文献
Contents Vol. 128, 2014 Contents Vol. 26, 2014 Front & Back Matter Front & Back Matter Contents Vol. 124, 2013
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