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KCNE2 与 KCNA3 和 KCNQ1 在脉络丛上皮细胞中形成钾通道。

KCNE2 forms potassium channels with KCNA3 and KCNQ1 in the choroid plexus epithelium.

机构信息

Department of Pharmacology, Weill Cornell Medical College, 1300 York Ave., New York, NY 10021, USA.

出版信息

FASEB J. 2011 Dec;25(12):4264-73. doi: 10.1096/fj.11-187609. Epub 2011 Aug 22.

Abstract

Cerebrospinal fluid (CSF) is crucial for normal function and mechanical protection of the CNS. The choroid plexus epithelium (CPe) is primarily responsible for secreting CSF and regulating its composition by mechanisms currently not fully understood. Previously, the heteromeric KCNQ1-KCNE2 K(+) channel was functionally linked to epithelial processes including gastric acid secretion and thyroid hormone biosynthesis. Here, using Kcne2(-/-) tissue as a negative control, we found cerebral expression of KCNE2 to be markedly enriched in the CPe apical membrane, where we also discovered expression of KCNQ1. Targeted Kcne2 gene deletion in C57B6 mice increased CPe outward K(+) current 2-fold. The Kcne2 deletion-enhanced portion of the current was inhibited by XE991 (10 μM) and margatoxin (10 μM) but not by dendrotoxin (100 nM), indicating that it arose from augmentation of KCNQ subfamily and KCNA3 but not KCNA1 K(+) channel activity. Kcne2 deletion in C57B6 mice also altered the polarity of CPe KCNQ1 and KCNA3 trafficking, hyperpolarized the CPe membrane by 9 ± 2 mV, and increased CSF [Cl(-)] by 14% compared with wild-type mice. These findings constitute the first report of CPe dysfunction caused by cation channel gene disruption and suggest that KCNE2 influences blood-CSF anion flux by regulating KCNQ1 and KCNA3 in the CPe.

摘要

脑脊液(CSF)对于中枢神经系统的正常功能和机械保护至关重要。脉络丛上皮(CPe)主要负责分泌 CSF,并通过目前尚未完全理解的机制来调节其成分。先前,异源 KCNQ1-KCNE2 K(+)通道与包括胃酸分泌和甲状腺激素生物合成在内的上皮过程功能相关。在这里,我们使用 Kcne2(-/-)组织作为阴性对照,发现 KCNE2 在 CPe 顶膜中表达丰富,并且在那里也发现了 KCNQ1 的表达。在 C57B6 小鼠中靶向敲除 Kcne2 基因使 CPe 外向 K(+)电流增加了 2 倍。Kcne2 缺失增强的部分电流被 XE991(10 μM)和 margatoxin(10 μM)抑制,但不受 dendrotoxin(100 nM)抑制,表明它源于 KCNQ 亚家族和 KCNA3 而不是 KCNA1 K(+)通道活性的增强。C57B6 小鼠中 Kcne2 的缺失也改变了 CPe KCNQ1 和 KCNA3 的极性运输,使 CPe 膜超极化 9 ± 2 mV,并使 CSF [Cl(-)]增加 14%与野生型小鼠相比。这些发现构成了由于阳离子通道基因突变导致 CPe 功能障碍的首次报道,并表明 KCNE2 通过调节 CPe 中的 KCNQ1 和 KCNA3 来影响血液-CSF 阴离子通量。

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