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细胞外鸟苷三磷酸(GTP)是一种强效的水转运调节剂,可通过水通道蛋白5插入髓质外层皮质集合管(M1-CCD)上皮细胞的质膜来调节水的转运。

Extracellular GTP is a potent water-transport regulator via aquaporin 5 plasma-membrane insertion in M1-CCD epithelial cortical collecting duct cells.

作者信息

Mancinelli Rosa, La Rovere Rita Maria Laura, Fulle Stefania, Miscia Sebastiano, Marchisio Marco, Pierdomenico Laura, Lanuti Paola, Procino Giuseppe, Barbieri Claudia, Svelto Maria, Fanò-Illic Giorgio, Pietrangelo Tiziana

机构信息

Department of Neurosciences and Imaging (DNI), 'G. d'Annunzio' University of Chieti-Pescara, Chieti, Italy.

出版信息

Cell Physiol Biochem. 2014;33(3):731-46. doi: 10.1159/000358648. Epub 2014 Mar 7.

Abstract

BACKGROUND/AIMS: Extracellular GTP is able to modulate some specific functions in neuron, glia and muscle cell models as it has been demonstrated over the last two decades. In fact, extracellular GTP binds its specific plasma membrane binding sites and induces signal transduction via [Ca(2+)]i increase. We demonstrate, for the first time, that extracellular GTP is able to modulate cell swelling in M1-CCD cortical collecting duct epithelial cells via upregulation of aquaporin 5 (AQP5) expression.

METHODS

We used videoimaging, immunocitochemistry, flow cytometry, confocal techniques, Western blotting and RT-PCR for protein and gene expression analysis, respectively.

RESULTS

We demonstrate that AQP5 mRNA is up-regulated 7 h after the GTP exposure in the cell culture medium, and its protein level is increased after 12-24 h. We show that AQP5 is targeted to the plasma membrane of M1-CCD cells, where it facilitates cell swelling, and that the GTP-dependent AQP5 up-regulation occurs via [Ca(2+)]i increase. Indeed, GTP induces both oscillating and transient [Ca(2+)]i increase, and specifically the oscillating kinetic appears to be responsible for blocking cell cycle in the S-phase while the [Ca(2+)]i influx, with whatever kinetic, seems to be responsible for inducing AQP5 expression.

CONCLUSION

The role of GTP as a regulator of AQP5-mediated water transport in renal cells is of great importance in the physiology of renal epithelia, due to its possible physiopathological implications. GTP-dependent AQP5 expression could act as osmosensor. In addition, the data presented here suggest that GTP might play the same role in other tissues where rapid water transport is required for cell volume regulation and maintenance of the homeostasis.

摘要

背景/目的:在过去二十年中已有研究表明,细胞外鸟苷三磷酸(GTP)能够调节神经元、神经胶质细胞和肌肉细胞模型中的某些特定功能。事实上,细胞外GTP会结合其特定的质膜结合位点,并通过细胞内钙离子浓度([Ca(2+)]i)升高诱导信号转导。我们首次证明,细胞外GTP能够通过上调水通道蛋白5(AQP5)的表达来调节M1-CCD皮质集合管上皮细胞的细胞肿胀。

方法

我们分别使用视频成像、免疫细胞化学、流式细胞术、共聚焦技术、蛋白质免疫印迹法和逆转录-聚合酶链反应(RT-PCR)进行蛋白质和基因表达分析。

结果

我们证明,在细胞培养基中暴露于GTP 7小时后,AQP5信使核糖核酸(mRNA)上调,12 - 24小时后其蛋白质水平增加。我们表明,AQP5定位于M1-CCD细胞的质膜,在那里它促进细胞肿胀,并且GTP依赖性AQP5上调是通过[Ca(2+)]i升高发生的。事实上,GTP会诱导[Ca(2+)]i出现振荡性和瞬时性升高,具体而言,振荡动力学似乎负责在S期阻断细胞周期,而[Ca(2+)]i内流,无论其动力学如何,似乎都负责诱导AQP5表达。

结论

由于其可能的生理病理意义,GTP作为肾细胞中AQP5介导的水转运调节剂的作用在肾上皮生理学中非常重要。GTP依赖性AQP5表达可能充当渗透感受器。此外,本文提供的数据表明,GTP可能在其他需要快速水转运以调节细胞体积和维持内环境稳态的组织中发挥相同作用。

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