Hazum E
Department of Hormone Research, Weizmann Institute of Science, Rehovot, Israel.
Biochemistry. 1987 Nov 3;26(22):7011-4. doi: 10.1021/bi00396a023.
The interaction of 125I-buserelin, a superactive agonist of gonadotropin-releasing hormone (GnRH), with solubilized GnRH receptor was studied. The highest specific binding of 125I-buserelin to solubilized GnRH receptor is evident at 4 degrees C, and equilibrium is reached after 2 h of incubation. The soluble receptor retained 100% of the original binding activity when kept at 4 or 22 degrees C for 60 min. Mono- and divalent cations inhibited, in a concentration-dependent manner, the binding of 125I-buserelin to solubilized GnRH receptor. Monovalent cations require higher concentrations than divalent cations to inhibit the binding. Since the order of potency within the divalent cations was identical with that of their association constants to dicarboxylic compounds, it is suggested that there are at least two carboxylic groups of the receptor that participate in the binding of the hormone. The carboxyl groups of sialic acid residues are not absolutely required for GnRH binding since the binding of 125I-buserelin to solubilized GnRH receptor was only slightly affected by pretreatment with neuraminidase and wheat germ agglutinin. The finding that polylysines stimulate luteinizing hormone (LH) release from pituitary cell cultures with the same efficacy as GnRH suggests that simple charge interactions can induce LH release. According to these results, we propose that the driving force for the formation of the hormone-receptor complex is an ionic interaction between the positively charged amino acid arginine in position 8 and the carboxyl groups in the binding site.
研究了促性腺激素释放激素(GnRH)的超活性激动剂125I-布舍瑞林与可溶性GnRH受体的相互作用。125I-布舍瑞林与可溶性GnRH受体的最高特异性结合在4℃时明显,孵育2小时后达到平衡。当在4℃或22℃保持60分钟时,可溶性受体保留了100%的原始结合活性。单价和二价阳离子以浓度依赖性方式抑制125I-布舍瑞林与可溶性GnRH受体的结合。单价阳离子比二价阳离子需要更高的浓度来抑制结合。由于二价阳离子的效力顺序与其与二羧酸化合物的缔合常数顺序相同,因此表明受体至少有两个羧基参与激素的结合。唾液酸残基的羧基对于GnRH结合不是绝对必需的,因为用神经氨酸酶和麦胚凝集素预处理仅轻微影响125I-布舍瑞林与可溶性GnRH受体的结合。聚赖氨酸以与GnRH相同的效力刺激垂体细胞培养物中促黄体生成素(LH)释放的发现表明简单的电荷相互作用可以诱导LH释放。根据这些结果,我们提出激素-受体复合物形成的驱动力是第8位带正电荷的氨基酸精氨酸与结合位点中的羧基之间的离子相互作用。