Korytko A I, Zeitler P, Cuttler L
Department of Pediatrics, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Endocrinology. 1996 Apr;137(4):1326-31. doi: 10.1210/endo.137.4.8625907.
The mechanisms governing age-dependent patterns of GH secretion are not well understood. Studies have shown that pituitaries of fetal and neonatal mammals are highly responsive to the stimulatory effect of GH-releasing hormone (GHRH) compared to those of mature mammals. Differential pituitary responsiveness to GHRH may, therefore, contribute to the elevated circulating GH concentrations characteristic of the perinatal period and the subsequent decline in circulating GH late in life. Age-dependent expression of GHRH-receptor (GHRH-R) would provide a cellular mechanism to direct differential somatotroph responsiveness to GHRH. Therefore, we determined the ontogeny of rat GHRH-R gene expression. We studied rats at ages that correspond to major changes in circulating GH levels: embryonic day 19.5 (of 21.5-day gestation period); postnatal days 2, 12, 30, 45, and 70; and 1 yr of age. We found that GHRH-R messenger RNA (mRNA) expression was markedly age dependent (P < 0.0003). The concentration of GHRH-R mRNA was highest on day 19.5 of gestation, the earliest age studied, and declined during the perinatal period to reach a nadir at 12 days of age. GHRH-R mRNA levels increased at 30 days of age, at time corresponding to the onset of sexual maturation, and then declined later in life. In addition, we assessed the expression of GH and Pit-1 mRNAs in pituitaries of the same age groups; we found age-dependent patterns for these transcripts that did not parallel the ontogenic pattern observed for GHRH-R mRNA. Together, these data indicate that expression of rat pituitary GHRH-R mRNA is developmentally regulated and suggest that maturation of GHRH-R may be an important determinant of somatotroph function during early development.
目前对生长激素(GH)分泌随年龄变化模式的调控机制尚不清楚。研究表明,与成熟哺乳动物相比,胎儿和新生哺乳动物的垂体对生长激素释放激素(GHRH)的刺激作用高度敏感。因此,垂体对GHRH的反应性差异可能导致围产期循环GH浓度升高,以及后期循环GH水平下降。生长激素释放激素受体(GHRH-R)的年龄依赖性表达将为指导生长激素细胞对GHRH的不同反应提供一种细胞机制。因此,我们确定了大鼠GHRH-R基因表达的个体发生过程。我们研究了处于与循环GH水平主要变化相对应年龄阶段的大鼠:胚胎期第19.5天(妊娠期为21.5天);出生后第2、12、30、45和70天;以及1岁。我们发现GHRH-R信使核糖核酸(mRNA)表达明显依赖于年龄(P < 0.0003)。GHRH-R mRNA浓度在研究的最早年龄即妊娠第19.5天最高,并在围产期下降,在12日龄时达到最低点。GHRH-R mRNA水平在30日龄时升高,此时对应性成熟开始,随后在生命后期下降。此外,我们评估了同一年龄组垂体中GH和Pit-1 mRNA的表达;我们发现这些转录本的年龄依赖性模式与GHRH-R mRNA观察到的个体发生模式不平行。总之,这些数据表明大鼠垂体GHRH-R mRNA的表达受发育调控,并提示GHRH-R的成熟可能是早期发育过程中生长激素细胞功能的重要决定因素。