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前列腺素酶是一种膜锚定丝氨酸蛋白酶,可调节JME/CF15细胞(一种囊性纤维化气道上皮细胞系)中的钠电流。

Prostasin, a membrane-anchored serine peptidase, regulates sodium currents in JME/CF15 cells, a cystic fibrosis airway epithelial cell line.

作者信息

Tong Zhenyue, Illek Beate, Bhagwandin Vikash J, Verghese George M, Caughey George H

机构信息

Cardiovascular Research Institute, and Department of Medicine, University of California at San Francisco, San Francisco 94143, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2004 Nov;287(5):L928-35. doi: 10.1152/ajplung.00160.2004. Epub 2004 Jul 9.

Abstract

Prostasin is a tryptic peptidase expressed in prostate, kidney, lung, and airway. Mammalian prostasins are related to Xenopus channel-activating protease, which stimulates epithelial Na+ channel (ENaC) activity in frogs. In human epithelia, prostasin is one of several membrane peptidases proposed to regulate ENaC. This study tests the hypothesis that prostasin can regulate ENaC in cystic fibrosis epithelia in which excessive Na+ uptake contributes to salt and water imbalance. We show that prostasin mRNA and protein are strongly expressed by human airway epithelial cell lines, including immortalized JME/CF15 nasal epithelial cells homozygous for the DeltaF508 cystic fibrosis mutation. Epithelial cells transfected with vectors encoding recombinant soluble prostasin secrete active, tryptic peptidase that is highly sensitive to inactivation by aprotinin. When studied as monolayers in Ussing chambers, JME/CF15 cells exhibit amiloride-sensitive, transepithelial Na+ currents that are markedly diminished by aprotinin, suggesting regulation by serine-class peptidases. Overproduction of membrane-anchored prostasin in transfected JME/CF15 cells does not augment Na+ currents, and trypsin-induced increases are small, suggesting that baseline serine peptidase-dependent ENaC activation is maximal in these cells. To probe prostasin's involvement in basal ENaC activity, we silenced expression of prostasin using short interfering RNA targeting of prostasin mRNA's 3'-untranslated region. This drops ENaC currents to 26 +/- 9% of baseline. These data predict that prostasin is a major regulator of ENaC-mediated Na+ current in DeltaF508 cystic fibrosis epithelia and suggest that airway prostasin is a target for therapeutic inhibition to normalize ion current in cystic fibrosis airway.

摘要

前列腺素酶是一种在前列腺、肾脏、肺和气道中表达的胰蛋白酶。哺乳动物的前列腺素酶与非洲爪蟾的通道激活蛋白酶相关,后者可刺激青蛙上皮钠通道(ENaC)的活性。在人类上皮细胞中,前列腺素酶是几种被认为可调节ENaC的膜蛋白酶之一。本研究检验了这样一个假说,即前列腺素酶可调节囊性纤维化上皮细胞中的ENaC,在这种细胞中,过量的钠摄取会导致盐和水平衡失调。我们发现,前列腺素酶的mRNA和蛋白在人气道上皮细胞系中强烈表达,包括对ΔF508囊性纤维化突变纯合的永生化JME/CF15鼻上皮细胞。用编码重组可溶性前列腺素酶的载体转染的上皮细胞分泌有活性的胰蛋白酶,该酶对抑肽酶失活高度敏感。当在尤斯灌流小室中作为单层细胞进行研究时,JME/CF15细胞表现出对氨氯地平敏感的跨上皮钠电流,该电流被抑肽酶显著减弱,提示受丝氨酸类蛋白酶调节。在转染的JME/CF15细胞中过量表达膜锚定的前列腺素酶不会增加钠电流,且胰蛋白酶诱导的增加很小,提示在这些细胞中,基线丝氨酸蛋白酶依赖性ENaC激活已达最大值。为探究前列腺素酶在基础ENaC活性中的作用,我们使用靶向前列腺素酶mRNA 3'非翻译区的小干扰RNA使前列腺素酶的表达沉默。这使ENaC电流降至基线的26±9%。这些数据预测前列腺素酶是ΔF508囊性纤维化上皮细胞中ENaC介导的钠电流的主要调节因子,并提示气道前列腺素酶是治疗性抑制的靶点,以使囊性纤维化气道中的离子电流正常化。

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