Lai Z, Roos P, Olsson Y, Larsson C, Nyberg F
Department of Pharmacology, University of Uppsala, Sweden.
Neuroendocrinology. 1992 Aug;56(2):225-33. doi: 10.1159/000126232.
The specific binding of 125I-human prolactin (hPRL) was studied in different areas of the human brain. Particularly high binding affinity of the hormone was found in the choroid plexus and this tissue was therefore selected for further studies. The hippocampus, the hypothalamus and the pituitary were among other regions containing prolactin-binding sites. In the choroid plexus the amount of PRL receptors was significantly higher in females than in males and was also found in both sexes to decrease with age. The binding affinity of 125I-hPRL to choroid plexus was 3.0 x 10(9) M-1 and the binding capacity was 10.3 pmol per mg protein. Following solubilization with Triton X-100 the PRL receptor fraction retained its hormone-binding properties and upon molecular sieve chromatography it behaved as a protein with a molecular mass of approximately 250,000. Cross-linking of 125I-hPRL to receptors from choroid plexus and subsequent sodium dodecyl sulfate (SDS) polyacrylamide gel electrophoresis indicated a major hormone-binding unit of M(r) 44,000. This value is about 7,000 smaller than that reported earlier by us for the growth hormone receptors from the same tissue, following cross-linking to 125I-human growth hormone (hGH). By affinity column chromatography a complete separation of the hPRL and hGH binding units was achieved. It was thus shown that in choroid plexus the binding sites for GH and PRL occur as discrete entities.
研究了125I-人催乳素(hPRL)在人脑不同区域的特异性结合。在脉络丛中发现该激素具有特别高的结合亲和力,因此选择该组织进行进一步研究。海马体、下丘脑和垂体等其他区域也含有催乳素结合位点。在脉络丛中,女性的PRL受体数量明显高于男性,并且在两性中均发现其随年龄增长而减少。125I-hPRL与脉络丛的结合亲和力为3.0×10(9) M-1,结合容量为每毫克蛋白质10.3皮摩尔。用Triton X-100溶解后,PRL受体部分保留了其激素结合特性,在分子筛色谱上,它表现为一种分子量约为250,000的蛋白质。将125I-hPRL与脉络丛中的受体交联,随后进行十二烷基硫酸钠(SDS)聚丙烯酰胺凝胶电泳,结果表明主要的激素结合单元分子量为44,000。该值比我们之前报道的同一组织中生长激素受体与125I-人生长激素(hGH)交联后的分子量小约7,000。通过亲和柱色谱法实现了hPRL和hGH结合单元的完全分离。因此表明,在脉络丛中,GH和PRL的结合位点是作为离散实体存在的。