首页> 外文期刊>Laboratory investigation >Expression of aquaporin-5 in and fluid secretion from immortalized human salivary gland ductal cells by treatment with 5-aza-2|[prime]|-deoxycytidine: a possibility for improvement of xerostomia in patients with Sj|[ouml]|gren's syndrome
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Expression of aquaporin-5 in and fluid secretion from immortalized human salivary gland ductal cells by treatment with 5-aza-2|[prime]|-deoxycytidine: a possibility for improvement of xerostomia in patients with Sj|[ouml]|gren's syndrome

机译:通过5-aza-2 | [prime] |-脱氧胞苷处理,aquaporin-5在永生化的人唾液腺导管细胞中的表达和液体分泌:改善Sj | [ouml] | gren综合征患者的口干症

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The aim of the present study was to investigate the possibility that ductal cells, which preferentially survive and/or proliferate in Sj?gren's syndrome (SS) salivary glands of patients with SS, could acquire the functional expression of membrane water channel aquaporin-5 (AQP5). Thus, in this study, we demonstrate that an immortalized normal human salivary gland ductal cell (NS-SV-DC) line, lacking the expression of AQP5, acquires AQP5 gene expression in response to treatment with 5-aza-2'-deoxycytidine (5-Aza-CdR), a DNA demethylating agent. Confocal microscopic analysis revealed the localization of AQP5 expression mainly at the apical and lateral sides of the plasma membrane. The expressed AQP5 protein was functionally active because AQP5 expression resulted in a significant increase in the osmotically directed net fluid rate across monolayers of NS-SV-DC cells. By the analysis of bisulfite sequencing of CpG islands in the AQP5 promoter, hypermethylation within the consensus Sp1-binding sites was commonly observed in parental cell clones, whereas demethylation at the CGs, one in the second consensus Sp1 element and the other outside of the third consensus Sp1 element in the AQP5 promoter, was detected in NS-SV-DC cells after treatment with 5-Aza-CdR. By analyzing the luciferase activity of transfected AQP5 promoter vectors, it became evident that demethylation at the CGs cooperatively functions between these two sites to induce AQP5 expression. Our data, therefore, suggest that treatment of ductal cells with 5-Aza-CdR could result in the expression of the AQP5 gene, thereby leading to increased fluid secretion from ductal cells in SS salivary glands.
机译:本研究的目的是调查在SS患者的Sj?gren综合征(SS)唾液腺中优先存活和/或增殖的导管细胞能否获得膜水通道aquaporin-5( AQP5)。因此,在这项研究中,我们证明了永生化的正常人唾液腺导管细胞(NS-SV-DC)系缺乏AQP5的表达,响应于5-氮杂2'-脱氧胞苷( 5-Aza-CdR),一种DNA去甲基化剂。共聚焦显微镜分析揭示了AQP5表达的定位主要在质膜的顶端和侧面。表达的AQP5蛋白具有功能活性,因为AQP5表达导致跨NS-SV-DC细胞单层的渗透方向净流体速率显着增加。通过对AQP5启动子中CpG岛的亚硫酸氢盐测序分析,通常在亲代细胞克隆中观察到共有Sp1结合位点内的甲基化过高,而在CG处的去甲基化作用,一个位于第二个共有Sp1元素中,另一个位于第三个以外经5-Aza-CdR处理后,在NS-SV-DC细胞中检测到AQP5启动子中的Sp1共有元件。通过分析转染的AQP5启动子载体的萤光素酶活性,很明显,CG的去甲基化作用在这两个位点之间协同起作用,以诱导AQP5表达。因此,我们的数据表明,用5-Aza-CdR处理导管细胞可能导致AQP5基因的表达,从而导致SS唾液腺导管细胞的液体分泌增加。

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