Ogata K, Zhang Z G, Abe K, Murphy M J
Hipple Cancer Research Center, Dayton, Ohio 45439-2092.
Int J Cell Cloning. 1990 Jan;8 Suppl 1:103-20. doi: 10.1002/stem.5530080710.
Megakaryocyte colony-stimulating factor (Meg-CSF) in urinary extracts from patients with aplastic anemia was partially characterized and purified. Using Meg-CSF-enriched fractions, we established that the moiety has the following characteristics: 1) portions of the molecules having Meg-CSF activity have sialic acid, probably with a biantennary structure, and beta-galactose residues as the terminal and penultimate sugars; 2) disulfide residues are an essential chemical group of the molecule and are located on its surface; and 3) Meg-CSF activity is stable in n-propanol, but not in acetonitrile with trifluoroacetic acid. Partial purification of Meg-CSF by a four-step procedure of ethanol precipitation, CM Affi-Gel Blue chromatography, wheat germ agglutinin-sepharose chromatography, and high-resolution hydroxyapatite chromatography, yielded a concentrate with a 430- to 630-fold increase in specific activity. The partially purified Meg-CSF fractions stimulated both human and murine megakaryocytopoiesis in vitro (CFU-meg). When analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis under nonreduced conditions, Meg-CSF activity was recovered in the 29-34 kDa molecular weight fractions. We have also shown that Meg-CSF, purified from the urine of aplastic anemia patients, stimulated murine megakaryocytopoiesis and platelet production in vivo. Final purification of human urinary Meg-CSF is currently in progress.
对再生障碍性贫血患者尿液提取物中的巨核细胞集落刺激因子(Meg-CSF)进行了部分特性鉴定和纯化。利用富含Meg-CSF的组分,我们确定该部分具有以下特性:1)具有Meg-CSF活性的分子部分含有唾液酸,可能具有双天线结构,且β-半乳糖残基作为末端和倒数第二个糖;2)二硫键残基是该分子的必需化学基团,位于其表面;3)Meg-CSF活性在正丙醇中稳定,但在含有三氟乙酸的乙腈中不稳定。通过乙醇沉淀、CM Affi-Gel Blue层析、麦胚凝集素-琼脂糖层析和高分辨率羟基磷灰石层析的四步程序对Meg-CSF进行部分纯化,得到了一种比活性提高430至630倍的浓缩物。部分纯化的Meg-CSF组分在体外刺激了人和小鼠的巨核细胞生成(CFU-meg)。在非还原条件下通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析时,Meg-CSF活性在分子量为29-34 kDa的组分中得以恢复。我们还表明,从再生障碍性贫血患者尿液中纯化的Meg-CSF在体内刺激了小鼠的巨核细胞生成和血小板产生。目前正在进行人尿Meg-CSF的最终纯化。