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首页> 外文期刊>Cellular Physiology and Biochemistry >Aquaporin-2 Levels in vitro and in vivo are Regulated by VACM-1, a Cul 5 Gene
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Aquaporin-2 Levels in vitro and in vivo are Regulated by VACM-1, a Cul 5 Gene

机译:体外和体内水通道蛋白2的水平受Cul 5基因VACM-1的调节

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Background: In the renal collecting duct, vasopressin regulates water permeability by a process that involves stimulation of adenylyl cyclase activity, cAMP production and subsequent translocation of water channel aquaporin-2 (AQP2) into the apical plasma membrane. We have previously shown that in cos 1 cells in vitro, both adenylyl cyclase activity and cAMP production can be regulated by VACM-1, a cul 5 gene that forms complexes involved in protein ubiquitination and subsequent degradation. Methods: To extend these observations further, the effects of changes in hydration state on the expression of VACM-1 at the mRNA and the protein level were examined in rats deprived of water (WD) for 24 hrs. Results: In the kidney of WD rats Western blot analyses of kidney tissue showed that the decrease in VACM-1 protein concentration was correlated with the increase in the AQP2 protein level. The immunostaining data suggested that VACM-1/cul5 may be decreased in renal collecting duct but increases in the vasculature of the inner medullary region in response to WD. To determine the possible consequences of the WD dependent decrease in VACM-1/cul5, we next examined the effects of VACM-1 expression on AQP2 protein in vitro. Immunocytochemistry and Western blot analyses data indicate that VACM-1/cul5 expression in MDCK line stably expressing AQP2 gene and in cos 1 cells co-transfected with the AQP2 and VACM-1/cul5 cDNAs decreased AQP2 protein concentration when compared to the vector transfected control groups. Conclusion: In summary, our data demonstrate that VACM-1 is involved in the regulation of AQP2 protein concentration and may play a role in regulating water balance.
机译:背景:在肾脏收集管中,加压素通过一个过程来调节水的渗透性,该过程涉及刺激腺苷酸环化酶的活性,产生cAMP以及随后将水通道aquaporin-2(AQP2)转运到顶质膜。我们以前已经表明,在体外cos 1细胞中,腺苷酸环化酶活性和cAMP产生都可以通过VACM-1来调节,VACM-1是cul 5基因,形成参与蛋白质泛素化和随后降解的复合物。方法:为进一步扩展这些观察结果,在缺水(WD)的大鼠中检测水合状态变化对VACM-1 mRNA和蛋白水平表达的影响24小时。结果:在WD大鼠的肾脏中,肾脏组织的蛋白质印迹分析表明VACM-1蛋白浓度的降低与AQP2蛋白水平的升高有关。免疫染色数据表明,响应WD,VACM-1 / cul5可能在肾收集管中减少,但在髓内区域的脉管中增加。为了确定WDM依赖的VACM-1 / cul5下降的可能后果,我们接下来研究了VACM-1表达对AQP2蛋白的体外影响。免疫细胞化学和Western印迹分析数据表明,与载体转染对照相比,MDCK系中稳定表达AQP2基因的VACM-1 / cul5表达以及与AQP2和VACM-1 / cul5 cDNA共转染的cos 1细胞中VACM-1 / cul5表达降低了AQP2蛋白浓度组。结论:总之,我们的数据表明VACM-1参与了AQP2蛋白浓度的调节,并且可能在调节水平衡中起作用。

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