Lee D W, Grasso P, Dattatreyamurty B, Deziel M R, Reichert L E
Department of Biochemistry, Albany Medical College, New York 12208.
J Clin Endocrinol Metab. 1993 Jul;77(1):163-8. doi: 10.1210/jcem.77.1.8325939.
In a previous study we reported the presence in human follicular fluid (hFF) of a FSH receptor-binding inhibitor (hFSH-BI) with FSH agonist activity, which was immunologically similar to FSH but could be distinguished from FSH on the basis of its greater stability in acid. We have now purified hFF-derived hFSH-BI after molecular sieving on Sephracyl S-100 ion exchange chromatography using Diethyl-aminoethyl-cellulose followed by polyacrylamide gel electrophoresis (PAGE). The purified hFSH-BI had a potency approximately 12,000-fold greater than that of dialyzed hFF, based on its ability to inhibit the binding of [125I]hFSH to its membrane receptor. The purified hFSH-BI also had FSH agonist activity, stimulating estradiol synthesis in cultured rat Sertoli cells. Upon sodium dodecyl sulfate (SDS)-PAGE, hFSH-BI migrated as two bands of almost identical mobility, with an estimated mol wt of 57,000, compared with 30,000 for pituitary FSH run simultaneously. A monoclonal antibody to hFSH that also recognizes hFSH-BI was used for Western blot analysis of the SDS-PAGE fraction. The Western blot confirmed the detection of two bands with very similar mobilities and estimated mol wt of 57,000, which were clearly distinguishable from that of immunologically reactive hFSH run in parallel. The hFSH-BI bands showed similar profiles upon cyanogen bromide cleavage and had indistinguishable amino acid compositions. The amino acid composition of hFSH-BI was clearly distinct from those of hFSH, hLH, hCG, and the alpha-subunit of human inhibin. Our studies confirm the presence in hFF of a unique agonist protein which is of potential importance in the regulation of gonadal function.
在先前的一项研究中,我们报告了人卵泡液(hFF)中存在一种具有FSH激动剂活性的FSH受体结合抑制剂(hFSH-BI),它在免疫学上与FSH相似,但基于其在酸性环境中更高的稳定性可与FSH区分开来。我们现在通过使用二乙氨基乙基纤维素进行离子交换色谱,继之以聚丙烯酰胺凝胶电泳(PAGE),在Sephracyl S-100上进行分子筛后,纯化了源自hFF的hFSH-BI。基于其抑制[125I]hFSH与其膜受体结合的能力,纯化后的hFSH-BI的效力比透析后的hFF大约高12,000倍。纯化后的hFSH-BI也具有FSH激动剂活性,可刺激培养的大鼠支持细胞中雌二醇的合成。在十二烷基硫酸钠(SDS)-PAGE上,hFSH-BI迁移为两条迁移率几乎相同的条带,估计分子量为57,000,而同时运行的垂体FSH的分子量为30,000。一种也识别hFSH-BI的抗hFSH单克隆抗体用于SDS-PAGE组分的蛋白质印迹分析。蛋白质印迹证实检测到两条迁移率非常相似且估计分子量为57,000的条带,它们与平行运行的免疫反应性hFSH明显不同。hFSH-BI条带在溴化氰裂解后显示出相似的图谱,并且氨基酸组成无法区分。hFSH-BI的氨基酸组成与hFSH、hLH、hCG和人抑制素的α亚基明显不同。我们的研究证实hFF中存在一种独特的激动剂蛋白,它在性腺功能调节中可能具有重要意义。