Morel G, Gallego R, Boulanger L, Pintos E, Garcia-Caballero T, Gaudreau P
CNRS UMR 5578, Université Lyon-I, Villeurbanne, France.
Neuroendocrinology. 1999 Aug;70(2):128-36. doi: 10.1159/000054467.
Specific binding of growth hormone-releasing hormone (GHRH) to its plasma membrane receptor represents the first step of cellular signals leading to exocytotic GH secretion in the anterior pituitary. The GHRH receptor (GHRH-R) has been cloned and belongs to the secretin/glucagon/vasoactive intestinal peptide subfamilly of G-protein-coupled receptors. To study its characteristics in rat and human pituitaries and examine its cellular and subcellular localization, a site-directed polyclonal antibody recognizing the C-terminal portion 392-404 of the rat and human GHRH-R was used. Immunohistochemistry was performed on paraffin-embedded pituitary sections while ultrastructural immunocytology was done on frozen and Lowicryl-resin-embedded ultrathin sections. GHRH-R-like immunoreactivity was restricted to somatotropes and colocalized with GH in both rat and human tissues. No signal was detected in gonadotropes, lactotropes, corticotropes and thyrotropes. At the subcellular level, gold particles were associated with the plasma membrane (observed on ultrathin frozen sections), secretory granule membrane, cytoplasmic matrix, nuclear membrane and nuclear matrix. In the nucleus, gold particles were mainly observed at the junction between eu- and heterochromatin. The highest density of labeling was observed in the cytoplasm (55 vs. 45% in the nucleus), mainly in secretory granules (59% of cytoplasmic labeling) and the plasma membrane. These results support the hypothesis that GHRH-mediated actions in the pituitary are specific to somatotropes and that GHRH-R isoforms and/or ligand-receptor complexes are involved in intracellular trafficking, recycling processes and nuclear functions.
生长激素释放激素(GHRH)与其质膜受体的特异性结合是导致垂体前叶通过胞吐作用分泌生长激素(GH)的细胞信号传导的第一步。GHRH受体(GHRH-R)已被克隆,属于G蛋白偶联受体的促胰液素/胰高血糖素/血管活性肠肽亚家族。为了研究其在大鼠和人垂体中的特性,并检测其细胞和亚细胞定位,我们使用了一种识别大鼠和人GHRH-R C末端392-404部分的定点多克隆抗体。对石蜡包埋的垂体切片进行免疫组织化学,而对冷冻和Lowicryl树脂包埋的超薄切片进行超微结构免疫细胞化学。GHRH-R样免疫反应仅限于生长激素细胞,并在大鼠和人组织中与GH共定位。在促性腺激素细胞、催乳激素细胞、促肾上腺皮质激素细胞和促甲状腺激素细胞中未检测到信号。在亚细胞水平上,金颗粒与质膜(在超薄冷冻切片上观察到)、分泌颗粒膜、细胞质基质、核膜和核基质相关。在细胞核中,金颗粒主要出现在常染色质和异染色质的交界处。标记密度最高的是在细胞质中(细胞核中为55%,细胞质中为45%),主要在分泌颗粒(占细胞质标记的59%)和质膜中。这些结果支持以下假设:GHRH在垂体中的介导作用对生长激素细胞具有特异性,并且GHRH-R亚型和/或配体-受体复合物参与细胞内运输、再循环过程和核功能。