Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Department of Physiology, Emory University School of Medicine, Atlanta, Georgia.
Am J Physiol Renal Physiol. 2019 Nov 1;317(5):F1331-F1341. doi: 10.1152/ajprenal.00316.2019. Epub 2019 Sep 11.
Posttranslational modifications are essential for the regulation of urea transporter-A1 (UT-A1), among which ubiquitination is a rather attractive and complex issue. Previously, our group reported that murine double minute 2 (MDM2) is one of the E3 ubiquitin ligases for UT-A1, and, later, we showed that ubiquitination contributes to the subcellular trafficking and stability of UT-A1. In the present study, we discovered that MDM2 interacts with UT-A1 in an AP50 (a component of the clathrin-coated pit)-dependent manner. However, their binding is irrelevant to the phosphorylatory status of UT-A1. Next, our findings indicated that MDM2 decreases the stability of either total or membrane UT-A1. On the cell membrane, MDM2 and ubiquitinated UT-A1 are both distributed in the lipid raft domain, and their linkage is obviously enhanced under forskolin (FSK) stimulation. In line with these results, in the diabetic rat, not only MDM2 but also ubiquitinated UT-A1 are intensified. Also, in vitro high glucose and angiotensin II play similar roles as FSK does on the association of MDM2 with UT-A1. In conclusion, MDM2 binds with UT-A1 and mediates its ubiquitination and degradation in an AP50-dependent manner, and their binding capacity is strengthened under FSK and diabetic milieu.
翻译后修饰对于尿素转运蛋白 -A1(UT-A1)的调节至关重要,其中泛素化是一个相当引人关注且复杂的问题。此前,我们团队报道鼠双微体2(MDM2)是UT-A1的E3泛素连接酶之一,后来我们发现泛素化有助于UT-A1的亚细胞转运和稳定性。在本研究中,我们发现MDM2以依赖AP50(网格蛋白包被小窝的一个组分)的方式与UT-A1相互作用。然而,它们的结合与UT-A1的磷酸化状态无关。接下来,我们的研究结果表明MDM2降低了总UT-A1或膜UT-A1的稳定性。在细胞膜上,MDM2和泛素化的UT-A1都分布在脂筏结构域,并且在福斯可林(FSK)刺激下它们的联系明显增强。与这些结果一致,在糖尿病大鼠中,不仅MDM2而且泛素化的UT-A1都增强。此外,体外高糖和血管紧张素II在MDM2与UT-A1的结合上发挥与FSK类似的作用。总之,MDM2与UT-A1结合并以依赖AP50的方式介导其泛素化和降解,并且它们的结合能力在FSK和糖尿病环境下增强。