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首页> 外文期刊>American Journal of Physiology >Mineralocorticoid receptor degradation is promoted by Hsp90 inhibition and the ubiquitin-protein ligase CHIP.
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Mineralocorticoid receptor degradation is promoted by Hsp90 inhibition and the ubiquitin-protein ligase CHIP.

机译:Hsp90抑制和泛素蛋白连接酶CHIP促进了盐皮质激素受体的降解。

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The mineralocorticoid receptor (MR) plays a crucial role in the regulation of Na(+) balance and blood pressure, as evidenced by gain of function mutations in the MR of hypertensive families. In the kidney, aldosterone binds to the MR, induces its nuclear translocation, and promotes a transcriptional program leading to increased transepithelial Na(+) transport via the epithelial Na(+) channel. In the unliganded state, MR is localized in the cytosol and part of a multiprotein complex, including heat shock protein 90 (Hsp90), which keeps it ligand-binding competent. 17-Allylamino-17-demethoxygeldanamycin (17-AAG) is a benzoquinone ansamycin antibiotic that binds to Hsp90 and alters its function. We investigated whether 17-AAG affects the stability and transcriptional activity of MR and consequently Na(+) reabsorption by renal cells. 17-AAG treatment lead to reduction of MR protein level in epithelial cells in vitro and in vivo, thereby interfering with aldosterone-dependent transcription. Moreover, 17-AAG inhibited aldosterone-induced Na(+) transport, possibly by interfering with MR availability for the ligand. Finally, we identified the ubiquitin-protein ligase, COOH terminus of Hsp70-interacting protein, as a novel partner of the cytosolic MR, which is responsible for its polyubiquitylation and proteasomal degradation in presence of 17-AAG. In conclusion, 17-AAG may represent a novel pharmacological tool to interfere with Na(+) reabsorption and hypertension.
机译:盐皮质激素受体(MR)在Na(+)平衡和血压的调节中起着至关重要的作用,高血压家族MR的功能突变获得了证明。在肾脏中,醛固酮与MR结合,诱导其核易位,并促进转录程序,从而导致通过上皮Na(+)通道的跨上皮Na(+)转运增加。在未结合状态下,MR定位于胞质溶胶和多蛋白复合物的一部分中,包括热激蛋白90(Hsp90),这使其具有配体结合能力。 17-烯丙基氨基-17-去甲氧基格尔德霉素(17-AAG)是与Hsp90结合并改变其功能的苯醌安沙霉素抗生素。我们调查了17-AAG是否影响MR的稳定性和转录活性,并因此影响肾细胞对Na(+)的重吸收。 17-AAG处理可导致体外和体内上皮细胞MR蛋白水平降低,从而干扰醛固酮依赖性转录。此外,17-AAG可能通过干扰配体的MR可用性抑制了醛固酮诱导的Na(+)转运。最后,我们确定了泛素蛋白连接酶,即Hsp70相互作用蛋白的COOH末端,是胞质MR的新型伴侣,其在17-AAG存在下负责其泛素化和蛋白酶体降解。总之,17-AAG可能代表一种新型的药理学工具,以干扰Na(+)重吸收和高血压。

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