Use of radioreceptor assay and cell superfusion system for in vitro screening of analogs of growth hormone-releasing hormone.

Receptor Pub Date : 1993-01-01
G Halmos, Z Rekasi, B Szoke, A V Schally
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Abstract

In the search for more active agonists and antagonists of human growth hormone-releasing hormone (hGH-RH), various analogs are being synthesized. In order to follow the binding affinity of these analogs, we have developed a sensitive in vitro radioreceptor assay for GH-RH based on binding of labeled [His1,Nle27]hGH-RH(1-32)NH2 to rat anterior pituitary membrane homogenates by adapting and modifying earlier methods. Scatchard analysis of saturation binding data demonstrated the presence of a single class of specific binding sites for GH-RH in membranes of rat anterior pituitaries with a Bmax of 33.3 +/- 5.2 fmol/mg protein and an apparent Kd of 0.19 +/- 0.02 nM. In displacement analyses, we compared the binding affinity of [His1,Nle27]hGH-RH(1-32)NH2 with its iodinated derivative. No significant differences were detected in IC50 concentrations ranging from 0.97 to 3.4 nM between labeled and nonlabeled hGH-RH analogs. These findings demonstrate the validity of the radioreceptor assay. To evaluate the biological activities of hGH-RH derivatives, we applied a sensitive, dispersed rat pituitary cell superfusion system. This dynamic in vitro system eliminates the drawbacks of the static pituitary cell culture. No differences were observed in biological activities of the iodinated and noniodinated hGH-RH analogs. GH-releasing activity obtained from the superfusion assay correlated well with GH-RH receptor binding affinity for all nonlabeled and labeled hGH-RH analogs examined. These two methods are fast, simple, and relatively inexpensive, and provide quantitative data on receptor affinities, biological activities, and hence structure-affinity and structure-activity relationships. Joint use of these two in vitro systems appears to be suitable for screening newly synthesized GH-RH analogs.

利用放射受体试验和细胞融合系统体外筛选生长激素释放激素类似物。
在寻找更有效的人类生长激素释放激素(hGH-RH)的激动剂和拮抗剂,各种类似物正在合成。为了追踪这些类似物的结合亲和力,我们通过调整和改进早期的方法,基于标记的[His1,Nle27]hGH-RH(1-32)NH2与大鼠垂体前膜浆液的结合,开发了一种敏感的GH-RH体外放射受体测定方法。饱和结合数据的Scatchard分析表明,GH-RH在大鼠垂体前叶膜中存在一类特异性结合位点,Bmax为33.3 +/- 5.2 fmol/mg蛋白,表观Kd为0.19 +/- 0.02 nM。在置换分析中,我们比较了[His1,Nle27]hGH-RH(1-32)NH2与其碘化衍生物的结合亲和力。标记的和未标记的hGH-RH类似物的IC50浓度在0.97 ~ 3.4 nM范围内无显著差异。这些发现证明了放射受体试验的有效性。为了评估hGH-RH衍生物的生物活性,我们应用了一种敏感的、分散的大鼠垂体细胞灌注系统。这种动态体外系统消除了静态垂体细胞培养的缺点。未观察到碘化和非碘化hGH-RH类似物的生物活性差异。从超融合实验中获得的gh释放活性与GH-RH受体对所有未标记和标记的hGH-RH类似物的结合亲和力密切相关。这两种方法快速、简单且相对便宜,可提供受体亲和力、生物活性以及结构-亲和力和结构-活性关系的定量数据。联合使用这两种体外系统似乎适合筛选新合成的GH-RH类似物。
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