Dainese E, Svergun D, Beltramini M, Di Muro P, Salvato B
Institute of Biochemistry, University of Teramo, Teramo, Italy.
Arch Biochem Biophys. 2000 Jan 1;373(1):154-62. doi: 10.1006/abbi.1999.1514.
Rapana venosa hemocyanin (Hc) is a giant oxygen-binding protein consisting of different subunits assembled in a hollow cylinder. The polypeptide chain of each subunit is believed to be folded in several oxygen-binding functional units of molecular mass 50 kDa, each containing a binuclear copper active site. Limited proteolysis with alpha-chymotrypsin of native R. venosa hemocyanin allows the separation of three functional proteolytic fragments with molecular masses of approximately 150, 100, and 50 kDa. The functional fragments, purified by combining gel filtration chromatography and ion-exchange FPLC, were analyzed by means of small-angle X-ray scattering (SAXS). The gyration radius of the 50-kDa Rapana Hc fraction (2.4 nm) agrees well with that calculated on the basis of the dimensions determined by X-ray crystallography for one functional unit of Octopus Hc (2.1 nm). Independent shape determination of the 50- and 100-kDa proteolytic fragments yields consistent low-resolution models. Simultaneous fitting of the SAXS data from these fragments provides a higher-resolution model of the 100-kDa species made of two functional units tilted with respect to each other. The model of the 150-kDa proteolytic fragment consistent with the SAXS data displays a linear chain-like aggregation of the 50-kDa functional units. These observations provide valuable information for the reconstruction of the three-dimensional structure of the minimal functional subunit of gastropod hemocyanin in solution. Furthermore, the spatial relationships among the different functional units within the subunit will help in elucidation of the overall quaternary structure of the oligomeric native protein.
脉红螺血蓝蛋白(Hc)是一种巨大的氧结合蛋白,由组装在空心圆柱体中的不同亚基组成。每个亚基的多肽链被认为折叠成几个分子量为50 kDa的氧结合功能单元,每个单元都含有一个双核铜活性位点。用α-胰凝乳蛋白酶对天然脉红螺血蓝蛋白进行有限的蛋白水解,可以分离出三个分子量约为150、100和50 kDa的功能性蛋白水解片段。通过凝胶过滤色谱和离子交换快速蛋白质液相色谱相结合纯化得到的功能片段,采用小角X射线散射(SAXS)进行分析。50 kDa脉红螺血蓝蛋白组分的回转半径(2.4 nm)与根据章鱼血蓝蛋白一个功能单元的X射线晶体学测定尺寸计算得到的回转半径(2.1 nm)非常吻合。对50 kDa和100 kDa蛋白水解片段进行独立的形状测定,得到了一致的低分辨率模型。对这些片段的SAXS数据进行同时拟合,得到了由两个相互倾斜的功能单元组成的100 kDa物种的更高分辨率模型。与SAXS数据一致的150 kDa蛋白水解片段模型显示出50 kDa功能单元的线性链状聚集。这些观察结果为重建腹足纲血蓝蛋白最小功能亚基在溶液中的三维结构提供了有价值的信息。此外,亚基内不同功能单元之间的空间关系将有助于阐明寡聚天然蛋白的整体四级结构。