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AQP2 靶向多泡体的结构洞察。

Structural Insights into AQP2 Targeting to Multivesicular Bodies.

机构信息

Department of Biochemistry and Structural Biology, Lund University, PO Box 124, 221 00, Lund, Sweden.

Department of Physiology, Radboud University Medical Centre, Geert Grooteplein-Zuid 10, 6525 GA Nijmegen, The Netherlands.

出版信息

Int J Mol Sci. 2019 Oct 28;20(21):5351. doi: 10.3390/ijms20215351.

Abstract

Vasopressin-dependent trafficking of AQP2 in the renal collecting duct is crucial for the regulation of water homeostasis. This process involves the targeting of AQP2 to the apical membrane during dehydration as well as its removal when hydration levels have been restored. The latter involves AQP2 endocytosis and sorting into multivesicular bodies (MVB), from where it may be recycled, degraded in lysosomes, or released into urine via exosomes. The lysosomal trafficking regulator-interacting protein 5 (LIP5) plays a crucial role in this by coordinating the actions of the endosomal sorting complex required for transport III (ESCRT-III) and vacuolar protein sorting 4 (Vps4) ATPase, resulting in the insertion of AQP2 into MVB inner vesicles. While the interaction between LIP5 and the ESCRT-III complex and Vps4 is well characterized, very little is known about how LIP5 interacts with AQP2 or any other membrane protein cargo. Here, we use a combination of fluorescence spectroscopy and computer modeling to provide a structural model of how LIP5 interacts with human AQP2. We demonstrate that, the AQP2 tetramer binds up to two LIP5 molecules and that the interaction is similar to that seen in the complex between LIP5 and the ESCRT-III component, charged multivesicular body protein 1B (CHMP1B). These studies give the very first structural insights into how LIP5 enables membrane protein insertion into MVB inner vesicles and significantly increase our understanding of the AQP2 trafficking mechanism.

摘要

血管加压素依赖性水通道蛋白 2(AQP2)在肾脏集合管中的运输对于水稳态的调节至关重要。这个过程涉及到在脱水时将 AQP2 靶向到顶膜,以及在水合水平恢复时将其去除。后者涉及 AQP2 内吞作用和分选到多泡体(MVB)中,AQP2 可能从那里被回收、在溶酶体中降解,或通过外泌体释放到尿液中。溶酶体运输调节剂相互作用蛋白 5(LIP5)通过协调内体分选复合物所需的运输 III(ESCRT-III)和液泡蛋白分选 4(Vps4)ATP 酶的作用,在这个过程中起着至关重要的作用,导致 AQP2 插入 MVB 内囊泡。虽然 LIP5 与 ESCRT-III 复合物和 Vps4 的相互作用已经得到很好的描述,但对于 LIP5 如何与 AQP2 或任何其他膜蛋白货物相互作用知之甚少。在这里,我们使用荧光光谱学和计算机建模相结合的方法,提供了 LIP5 与人 AQP2 相互作用的结构模型。我们证明,AQP2 四聚体可以结合多达两个 LIP5 分子,并且这种相互作用类似于 LIP5 与 ESCRT-III 成分、带电荷的多泡体蛋白 1B(CHMP1B)之间的复合物中观察到的相互作用。这些研究首次提供了关于 LIP5 如何使膜蛋白插入 MVB 内囊泡的结构见解,并大大提高了我们对 AQP2 运输机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcb8/6862464/a12c95375208/ijms-20-05351-g001.jpg

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