Pellegrini E, Bluet-Pajot M T, Mounier F, Bennett P, Kordon C, Epelbaum J
U159 Institut National de la Santé et de la Recherche Médicale, 75014 Paris, France.
J Neurosci. 1996 Dec 15;16(24):8140-8. doi: 10.1523/JNEUROSCI.16-24-08140.1996.
To test the hypothesis of the involvement of centrally expressed rat growth hormone receptors (rGH-R) in the ultradian rhythmicity of pituitary GH secretion, adult male rats were submitted to a 60 hr intracerebroventricular infusion of an antisense (AS) oligodeoxynucleotide (ODN) complementary to the sequence of rGH-R mRNA. Eight hour (10 A.M.-6 P.M.) GH secretory profiles, obtained from freely moving male rats infused with 2.0 nmol/hr of rGH-R AS, revealed a marked increase in GH peak amplitude (150 +/- 12 vs 101 +/- 10 ng/ml), trough levels (16.2 +/- 3.0 vs 5.4 +/- 1.4 ng/ml), and number of peaks (2.9 +/- 0.3 vs 1.8 +/- 0.2). No change was observed in rats treated with an ODN complementary to the prolactin receptor mRNA sequence (2.0 nmol/hr). Infusion of increasing ODN concentrations resulted in a dose-dependent stimulation of GH release. In parallel, somatogenic binding sites in the choroid plexus were decreased by 40%, and levels of rGH-R mRNA were increased in the periventricular nucleus (PeV) but unchanged in the arcuate nucleus (ARC). Levels of somatostatin mRNA, in the PeV but not in the ARC, were lowered by the treatment. Levels of GH-releasing hormone mRNA in the ARC were not affected. These data suggest that GH negative feedback results from a direct effect on central GH receptors and a subsequent activation of hypophysiotropic somatostatin neurons located in the anterior periventricular hypothalamus.
为了验证中枢表达的大鼠生长激素受体(rGH-R)参与垂体生长激素(GH)分泌的超日节律这一假说,对成年雄性大鼠进行了60小时的脑室内输注,输注的是与rGH-R mRNA序列互补的反义(AS)寡脱氧核苷酸(ODN)。从自由活动的雄性大鼠中获得的8小时(上午10点至下午6点)GH分泌曲线显示,以2.0 nmol/小时的速率输注rGH-R AS后,GH峰值幅度(150±12对101±10 ng/ml)、谷值水平(16.2±3.0对5.4±1.4 ng/ml)和峰值数量(2.9±0.3对1.8±0.2)均显著增加。用与催乳素受体mRNA序列互补的ODN(2.0 nmol/小时)处理的大鼠未观察到变化。输注浓度不断增加的ODN导致GH释放呈剂量依赖性刺激。同时,脉络丛中的促生长结合位点减少了40%,室旁核(PeV)中的rGH-R mRNA水平升高,但弓状核(ARC)中的水平未变。处理使PeV中的生长抑素mRNA水平降低,但ARC中的未降低。ARC中的生长激素释放激素mRNA水平未受影响。这些数据表明,GH负反馈是由于对中枢GH受体的直接作用以及随后激活位于下丘脑室旁前部的促垂体生长抑素神经元所致。