Schilling Kirstin, Opitz Nils, Wiesenthal Anja, Oess Stefanie, Tikkanen Ritva, Müller-Esterl Werner, Icking Ann
Institute of Biochemistry II, University of Frankfurt Medical School, D-60590 Frankfurt, Germany.
Mol Biol Cell. 2006 Sep;17(9):3870-80. doi: 10.1091/mbc.e05-08-0709. Epub 2006 Jun 28.
Recently, we characterized a novel endothelial nitric-oxide synthase (eNOS)-interacting protein, NOSTRIN (for eNOS-trafficking inducer), which decreases eNOS activity upon overexpression and induces translocation of eNOS away from the plasma membrane. Here, we show that NOSTRIN directly binds to caveolin-1, a well-established inhibitor of eNOS. Because this interaction occurs between the N terminus of caveolin (positions 1-61) and the central domain of NOSTRIN (positions 323-434), it allows for independent binding of each of the two proteins to eNOS. Consistently, we were able to demonstrate the existence of a ternary complex of NOSTRIN, eNOS, and caveolin-1 in Chinese hamster ovary (CHO)-eNOS cells. In human umbilical vein endothelial cells (HUVECs), the ternary complex assembles at the plasma membrane upon confluence or thrombin stimulation. In CHO-eNOS cells, NOSTRIN-mediated translocation of eNOS involves caveolin in a process most likely representing caveolar trafficking. Accordingly, trafficking of NOSTRIN/eNOS/caveolin is affected by altering the state of actin filaments or cholesterol levels in the plasma membrane. During caveolar trafficking, NOSTRIN functions as an adaptor to recruit mediators such as dynamin-2 essential for membrane fission. We propose that a ternary complex between NOSTRIN, caveolin-1, and eNOS mediates translocation of eNOS, with important implications for the activity and availability of eNOS in the cell.
最近,我们鉴定了一种新型的内皮型一氧化氮合酶(eNOS)相互作用蛋白,即NOSTRIN(eNOS转运诱导因子),该蛋白在过表达时会降低eNOS活性,并诱导eNOS从质膜上移位。在此,我们表明NOSTRIN直接与小窝蛋白-1结合,小窝蛋白-1是一种公认的eNOS抑制剂。由于这种相互作用发生在小窝蛋白的N端(第1至61位)和NOSTRIN的中央结构域(第323至434位)之间,这使得两种蛋白中的每一种都能独立与eNOS结合。一致地,我们能够在中华仓鼠卵巢(CHO)-eNOS细胞中证明NOSTRIN、eNOS和小窝蛋白-1三元复合物的存在。在人脐静脉内皮细胞(HUVECs)中,三元复合物在汇合或凝血酶刺激后在质膜上组装。在CHO-eNOS细胞中,NOSTRIN介导的eNOS移位过程涉及小窝蛋白,这一过程很可能代表小窝运输。因此,NOSTRIN/eNOS/小窝蛋白的运输会受到肌动蛋白丝状态或质膜胆固醇水平改变的影响。在小窝运输过程中,NOSTRIN作为衔接蛋白招募诸如发动蛋白-2等对膜裂变至关重要的介质。我们提出,NOSTRIN、小窝蛋白-1和eNOS之间的三元复合物介导eNOS的移位,这对细胞中eNOS的活性和可用性具有重要意义。