Lee Mi Suk, Choi Hyo-Jung, Park Eui-Jung, Park Hye-Jeong, Kwon Tae-Hwan
Department of Biochemistry and Cell Biology, School of Medicine, Kyungpook National University, Taegu, Korea; and.
BK21 Plus KNU Biomedical Convergence Program, Department of Biomedical Science, Kyungpook National University, Taegu, Korea.
Am J Physiol Renal Physiol. 2016 Dec 1;311(6):F1294-F1307. doi: 10.1152/ajprenal.00307.2016. Epub 2016 Oct 12.
The carboxyl terminus of aquaporin-2 (AQP2c) undergoes posttranslational modifications, including phosphorylation and ubiquitination, in the process of regulating aquaporin-2 (AQP2) translocation and protein abundance. We aimed to identify novel proteins interacting with AQP2c. Recombinant AQP2c protein was made in Escherichia coli BL21 (DE3) cells by exploiting the pET32 TrxA fusion system. Lysates of rat kidney inner medullary collecting duct (IMCD) tubule suspensions interacted with rat AQP2c bound to Ni-resin were subjected to LC-MS/MS proteomic analysis. Potential interacting proteins were identified, including vacuolar protein sorting-associated protein 35 (Vps35). Coimmunoprecipitation assay demonstrated that Vps35 interacted with AQP2c. Immunohistochemistry of rat kidney revealed that AQP2 and Vps35 were partly colocalized at the intracellular vesicles in collecting duct cells. The role of Vps35 in AQP2 regulation induced by 1-deamino-8D-arginine vasopressin (dDAVP) was examined in mpkCCDc14 cells. Cell surface biotinylation assay demonstrated that dDAVP-induced apical translocation of AQP2 was significantly decreased under siRNA-mediated Vps35 knockdown. dDAVP-induced AQP2 upregulation was less prominent in the cells with Vps35 knockdown. Moreover, AQP2 protein abundance was decreased to a greater extent during the withdrawal period after dDAVP stimulation under Vps35 knockdown, which was significantly inhibited by chloroquine (a blocker of the lysosomal pathway) but not by MG132 (a proteasome inhibitor). Immunocytochemistry demonstrated that internalized AQP2 was more associated with lysosomal-associated membrane protein 1 (LAMP-1) in primary cultured IMCD cells under a Vps35 knockdown situation. Taken together, our results show that Vps35 interacts with AQP2c, and depletion of Vps35 is likely to be associated with decreased AQP2 trafficking and increased lysosomal degradation of AQP2 protein.
水通道蛋白-2(AQP2c)的羧基末端在调节水通道蛋白-2(AQP2)转运和蛋白质丰度的过程中会经历翻译后修饰,包括磷酸化和泛素化。我们旨在鉴定与AQP2c相互作用的新蛋白。利用pET32 TrxA融合系统在大肠杆菌BL21(DE3)细胞中制备重组AQP2c蛋白。将与镍树脂结合的大鼠AQP2c相互作用的大鼠肾内髓集合管(IMCD)小管悬浮液裂解物进行液相色谱-串联质谱(LC-MS/MS)蛋白质组学分析。鉴定出了潜在的相互作用蛋白,包括液泡蛋白分选相关蛋白35(Vps35)。免疫共沉淀试验表明Vps35与AQP2c相互作用。大鼠肾脏的免疫组织化学显示,AQP2和Vps35在集合管细胞的细胞内囊泡中部分共定位。在mpkCCDc14细胞中研究了Vps35在1-去氨基-8-D-精氨酸加压素(dDAVP)诱导的AQP2调节中的作用。细胞表面生物素化试验表明,在小干扰RNA(siRNA)介导的Vps35敲低情况下,dDAVP诱导的AQP2顶端转运显著降低。在Vps35敲低的细胞中,dDAVP诱导的AQP2上调不太明显。此外,在Vps35敲低的情况下,dDAVP刺激后的撤药期内,AQP2蛋白丰度下降幅度更大,这被氯喹(溶酶体途径阻滞剂)显著抑制,但未被MG132(蛋白酶体抑制剂)抑制。免疫细胞化学表明,在Vps35敲低的情况下,原代培养的IMCD细胞中内化的AQP2与溶酶体相关膜蛋白1(LAMP-1)的相关性更高。综上所述,我们的结果表明Vps35与AQP2c相互作用,Vps35的缺失可能与AQP2转运减少和AQP2蛋白的溶酶体降解增加有关。