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血管加压素反应性肾集合管主细胞中水通道蛋白-2表达的长期调节。

Long term regulation of aquaporin-2 expression in vasopressin-responsive renal collecting duct principal cells.

作者信息

Hasler Udo, Mordasini David, Bens Marcelle, Bianchi Matthieu, Cluzeaud Francoise, Rousselot Martine, Vandewalle Alain, Feraille Eric, Martin Pierre-Yves

机构信息

Division of Nephrology, Fondation pour Recherches Médicales, 64 Avenue de la Roseraie, CH-1211, Genève 4, Switzerland.

出版信息

J Biol Chem. 2002 Mar 22;277(12):10379-86. doi: 10.1074/jbc.M111880200. Epub 2002 Jan 8.

Abstract

Fine regulation of water reabsorption by the antidiuretic hormone [8-arginine]vasopressin (AVP) occurs in principal cells of the collecting duct and is largely dependent on regulation of the aquaporin-2 (AQP2) water channel. AVP-inducible long term AQP2 expression was investigated in immortalized mouse cortical collecting duct principal cells. Combined RNase protection assay, Western blot, and immunofluorescence analyses revealed that physiological concentrations of AVP added to the basal side, but not to the apical side, of cells grown on filters induced both AQP2 mRNA and apical protein expression. The stimulatory effect of AVP on AQP2 expression followed a V(2) receptor-dependent pathway because [deamino-8-d-arginine]vasopressin (dDAVP), a specific V(2) receptor agonist, produced the same effect as AVP, whereas the V(2) antagonist SR121463B antagonized action of both AVP and dDAVP. Moreover, forskolin and cyclic 8-bromo-AMP fully reproduced the effects of AVP on AQP2 expression. Analysis of protein degradation pathways showed that inhibition of proteasomal activity prevented synthesis of AVP-inducible AQP2 mRNA and protein. Once synthesized, AQP2 protein was quickly degraded, a process that involves both the proteasomal and lysosomal pathways. This is the first study that delineates induction and degradation mechanisms of AQP2 endogenously expressed by a renal collecting duct principal cell line.

摘要

抗利尿激素[8-精氨酸]血管加压素(AVP)对水重吸收的精细调节发生在集合管主细胞中,并且很大程度上依赖于水通道蛋白-2(AQP2)水通道的调节。在永生化小鼠皮质集合管主细胞中研究了AVP诱导的长期AQP2表达。联合核糖核酸酶保护试验、蛋白质免疫印迹和免疫荧光分析表明,添加到滤膜上生长的细胞基底侧而非顶端侧的生理浓度的AVP可诱导AQP2 mRNA和顶端蛋白表达。AVP对AQP2表达的刺激作用遵循V(2)受体依赖性途径,因为特异性V(2)受体激动剂[去氨基-8-d-精氨酸]血管加压素(dDAVP)产生与AVP相同的作用,而V(2)拮抗剂SR121463B可拮抗AVP和dDAVP的作用。此外,福斯可林和环化8-溴-AMP完全重现了AVP对AQP2表达的影响。蛋白质降解途径分析表明,蛋白酶体活性的抑制可阻止AVP诱导的AQP2 mRNA和蛋白质的合成。一旦合成,AQP2蛋白会迅速降解,这一过程涉及蛋白酶体和溶酶体途径。这是第一项描述肾集合管主细胞系内源性表达的AQP2的诱导和降解机制的研究。

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