Evatt B L, Levin J, Algazy K M
Blood. 1979 Aug;54(2):377-88.
Partially purified thrombopoiesis-stimulating activity was prepared from the plasma of thrombocytopenic rabbits using ammonium sulfate precipitation and DEAE cellulose, Sephadex, and carboxymethyl cellulose chromatography. The protein fraction precipitated by an ammonium sulfate saturation of 60%-80%, previously shown to contain thrombopoiesis-stimulating activity, was used as starting material. Column chromatography was carried out at room temperature at pH 5.6. Under these conditions, thrombopoiesis-stimulating activity (thrombopoietin) was retained by DEAE cellulose (0/03 M citrate-phosphate buffer) and carboxymethyl cellulose (0/003 M citrate-phosphate buffer), and eluted with 0.4 M NaCl. Thrombopoietin was retarded by Sephadex G-100; the ratio of the elution volume to the void volume was 1.32:1. Immunoelectrophoretic analysis of partially purified thrombopoietin indicated that following removal of most of the albumin by DEAE chromatography, only proteins with the mobilities of beta-globulins and albumin and traces of other anodally migrating proteins were detectable in the fractions that contained thrombopoiesis-stimulating activity. Thrombopoietin was not dialyzable and was stable from at least pH 5.6 to 7.5. It was approximately 1000-fold purified following sequential chromatography with DEAE and carboxymethyl cellulose. Although the three fractions described reproducibly stimulated thrombopoiesis, as measured by increased levels of selenomethionine-75Se (75SeM) in the circulating platelets, platelet counts did not increase.
采用硫酸铵沉淀法以及DEAE纤维素、葡聚糖凝胶和羧甲基纤维素柱色谱法,从血小板减少症兔的血浆中制备了部分纯化的血小板生成刺激活性物质。以先前已证明含有血小板生成刺激活性的、经60%-80%硫酸铵饱和度沉淀的蛋白质级分作为起始原料。柱色谱在室温、pH 5.6条件下进行。在这些条件下,血小板生成刺激活性物质(血小板生成素)被DEAE纤维素(0.03M柠檬酸盐-磷酸盐缓冲液)和羧甲基纤维素(0.003M柠檬酸盐-磷酸盐缓冲液)保留,并在加入0.4M氯化钠后洗脱。血小板生成素在葡聚糖凝胶G-100中移动缓慢;洗脱体积与空体积之比为1.32:1。对部分纯化的血小板生成素进行免疫电泳分析表明,通过DEAE色谱法去除大部分白蛋白后,在含有血小板生成刺激活性的级分中,仅可检测到具有β-球蛋白和白蛋白迁移率的蛋白质以及微量其他向阳极迁移的蛋白质。血小板生成素不可透析,且在至少pH 5.6至7.5的范围内稳定。经DEAE和羧甲基纤维素顺序色谱法后,其纯化倍数约为1000倍。尽管所述的三个级分均能可重复地刺激血小板生成,这可通过循环血小板中硒代蛋氨酸-75Se(75SeM)水平的升高来衡量,但血小板计数并未增加。