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首页> 外文期刊>American Journal of Physiology >Vasopressin regulation of multisite phosphorylation of UT-A1 in the inner medullary collecting duct
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Vasopressin regulation of multisite phosphorylation of UT-A1 in the inner medullary collecting duct

机译:内髓内管道中UT-A1多立体磷酸化的血管加压素调节

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Vasopressin signaling is critical for the regulation of urea transport in the inner medullary collecting duct (IMCD). Increased urea permeability is driven by a vasopressin-mediated elevation of cAMP that results in the direct phosphorylation of urea transporter (UT)-A1. The identification of cAMP-sensitive phosphorylation sites, Ser~(486) and Ser~(499), in the rat UT-A1 sequence was the first step in understanding the mechanism of vasopressin action on the phosphorylation-dependent modulation of urea transport. To investigate the significance of multisite phosphorylation of UT-A1 in response to elevated cAMP, we used highly specific and sensitive phosphosite antibodies to Ser~(486) and Ser~(499) to determine cAMP action at each phosphorylation site. We found that phosphorylation at both sites was rapid and sustained. Furthermore, the rate of phosphorylation of the two sites was similar in both mIMCD3 cells and rat inner medullary tissue. UT-A1 localized to the apical membrane in response to vasopressin was phosphorylated at Ser~(486) and Ser~(499). We confirmed that elevated cAMP resulted in increased phosphorylation of both sites by PKA but not through the vasopressin-sensitive exchange protein activated by cAMP pathway. These results elucidate the multisite phosphorylation of UT-A1 in response to cAMP, thus providing the beginning of understanding the intracellular factors underlying vasopressin stimulation of urea transport in the IMCD.
机译:血管加压素信令对于内髓内收集管道(IMCD)中的尿素输送至关重要。尿素介导的尿素介导的胰岛膜驱动增加,导致尿素转运蛋白(UT)-A1的直接磷酸化。在大鼠UT-A1序列中,鉴定露营敏感性磷酸化位点,Ser〜(486)和Ser〜(499)是了解血压加压素作用对尿素运输磷酸化依赖性调节的机制的第一步。为了探讨UT-A1响应升高阵营的多立体磷酸化的重要性,我们使用高度特异性和敏感的磷化物抗体对Ser〜(486)和Ser〜(499)来确定每种磷酸化位点的阵营作用。我们发现两个位点的磷酸化都是快速和持续的。此外,两个位点的磷酸化率在MIMCD3细胞和大鼠内髓组织中相似。在Ser〜(486)和Ser〜(499)上呈返回血管素响应于血管素的UT-A1磷酸化。我们证实,升高的营地通过PKA导致了PKA磷酸化,但不是通过CAMP途径激活的血管加压素敏感的交换蛋白。这些结果阐明了对阵营的响应uT-A1的多立体磷酸化,从而提供了了解加压素潜水尿素转运中尿素转运的细胞内因素的开始。

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