Riehl R M, Toft D O
J Biol Chem. 1984 Dec 25;259(24):15324-30. doi: 10.1515/9783110885026.733.
We have previously reported the discovery of a specific high-affinity binding protein for the fungal sex steroid pheromone antheridiol in the cytosol of Achlya ambisexualis male cells. In this report, we describe the fractionation of the binding protein from the cytosol by ammonium sulfate precipitation, the optimization of in vitro conditions for radioligand binding assays, and some of the biochemical properties of the binding protein. In the presence of sodium molybdate, the macromolecule has a sedimentation coefficient of 8.3 S in sucrose gradients of low ionic strength, a Stokes radius of 56.6 A (Sephacryl S-300 columns), a molecular weight of approximately 192,000, a frictional ratio of 1.5, and an axial ratio of 8.9. The binding protein can be eluted with 0.24 M KCl as a single peak from DEAE-Sephadex A-25 columns. These results indicate that this steroid-binding protein from a primitive eukaryotic microbe has in vitro biochemical properties that are similar to those of other known steroid receptors in higher organisms.
我们之前报道过在双性绵霉雄性细胞的胞质溶胶中发现了一种针对真菌性甾体信息素花药二醇的特异性高亲和力结合蛋白。在本报告中,我们描述了通过硫酸铵沉淀从胞质溶胶中分离结合蛋白、放射性配体结合测定体外条件的优化以及结合蛋白的一些生化特性。在钼酸钠存在的情况下,该大分子在低离子强度的蔗糖梯度中的沉降系数为8.3 S,斯托克斯半径为56.6 Å(Sephacryl S - 300柱),分子量约为192,000,摩擦比为1.5,轴比为8.9。该结合蛋白可以用0.24 M KCl从DEAE - Sephadex A - 25柱上以单峰形式洗脱。这些结果表明,这种来自原始真核微生物的甾体结合蛋白具有与高等生物中其他已知甾体受体相似的体外生化特性。