Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.
PLoS Biol. 2013;11(8):e1001640. doi: 10.1371/journal.pbio.1001640. Epub 2013 Aug 27.
Caveolae are an abundant feature of the plasma membrane of many mammalian cell types, and have key roles in mechano-transduction, metabolic regulation, and vascular permeability. Caveolin and cavin proteins, as well as EHD2 and pacsin 2, are all present in caveolae. How these proteins assemble to form a protein interaction network for caveolar morphogenesis is not known. Using in vivo crosslinking, velocity gradient centrifugation, immuno-isolation, and tandem mass spectrometry, we determine that cavins and caveolins assemble into a homogenous 80S complex, which we term the caveolar coat complex. There are no further abundant components within this complex, and the complex excludes EHD2 and pacsin 2. Cavin 1 forms trimers and interacts with caveolin 1 with a molar ratio of about 1∶4. Cavins 2 and 3 compete for binding sites within the overall coat complex, and form distinct subcomplexes with cavin 1. The core interactions between caveolin 1 and cavin 1 are independent of cavin 2, cavin 3, and EHD2 expression, and the cavins themselves can still interact in the absence of caveolin 1. Using immuno-electron microscopy as well as a recently developed protein tag for electron microscopy (MiniSOG), we demonstrate that caveolar coat complexes form a distinct coat all around the caveolar bulb. In contrast, and consistent with our biochemical data, EHD2 defines a different domain at the caveolar neck. 3D electron tomograms of the caveolar coat, labeled using cavin-MiniSOG, show that the caveolar coat is composed of repeating units of a unitary caveolar coat complex.
小窝是许多哺乳动物细胞类型的质膜的丰富特征,在机械转导、代谢调节和血管通透性中具有关键作用。小窝蛋白和小窝相关蛋白,以及 EHD2 和 pacsin 2,都存在于小窝中。这些蛋白质如何组装形成小窝形态发生的蛋白质相互作用网络尚不清楚。使用体内交联、速度梯度离心、免疫分离和串联质谱,我们确定小窝相关蛋白和小窝蛋白组装成同质的 80S 复合物,我们称之为小窝被膜复合物。该复合物中没有进一步的丰富成分,并且该复合物排除了 EHD2 和 pacsin 2。Cavin 1 形成三聚体并与 caveolin 1 以约 1∶4 的摩尔比相互作用。Cavin 2 和 3 竞争结合整个被膜复合物中的结合位点,并与 cavin 1 形成不同的亚复合物。Caveolin 1 和 cavin 1 之间的核心相互作用独立于 cavin 2、cavin 3 和 EHD2 的表达,并且 cavins 本身在没有 caveolin 1 的情况下仍可以相互作用。使用免疫电子显微镜以及最近开发的用于电子显微镜的蛋白质标签(MiniSOG),我们证明小窝被膜复合物在整个小窝泡周围形成独特的被膜。相比之下,与我们的生化数据一致,EHD2 在小窝颈部定义了不同的域。使用 cavin-MiniSOG 标记的小窝被膜的 3D 电子断层图表明,小窝被膜由重复的单一小窝被膜复合物组成。