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Somatostatin receptor subtype 2 knockout mice are refractory to growth hormone-negative feedback on arcuate neurons.

作者信息

Zheng H, Bailey A, Jiang M H, Honda K, Chen H Y, Trumbauer M E, Van der Ploeg L H, Schaeffer J M, Leng G, Smith R G

机构信息

Department of Biochemistry & Physiology, Merck Research Laboratories, Rahway, New Jersey 07065, USA.

出版信息

Mol Endocrinol. 1997 Oct;11(11):1709-17. doi: 10.1210/mend.11.11.0016.

DOI:10.1210/mend.11.11.0016
PMID:9328352
Abstract

The pulsatile nature of GH release is apparently regulated by alternating sequential changes in two hypothalamic hormones, GH releasing hormone (GHRH) and somatostatin. Entrainment of this pulsatility appears to involve GH-mediated negative feedback. Recently a new receptor involved in GH release was cloned. Activation of this receptor by GH-releasing peptides and MK-0677 initiates and amplifies GH pulsatility and is associated with increased Fos immunoreactivity and electrical activity in GHRH containing arcuate neurons. We show that pretreating mice with GH blocks activation of these neurons by MK-0677. Similarly, octreotide inhibited the action of MK-0677. To determine whether this GH-mediated negative feedback on GHRH neurons was direct, or by GH stimulation of somatostatin release from periventricular neurons, we selectively inactivated the gene for one of the five specific somatostatin receptor subtypes (subtype 2). In the knockout mice, both GH and octreotide failed to inhibit MK-0677 activation of arcuate neurons. GH did, however, increase Fos immunoreactivity in the periventricular nucleus, consistent with GH stimulation of somatostatin release from periventricular neurons. Thus, GH-mediated negative feedback involves signaling between periventricular and arcuate neurons with the signal being transduced specifically through somatostatin subtype 2 receptors.

摘要

相似文献

1
Somatostatin receptor subtype 2 knockout mice are refractory to growth hormone-negative feedback on arcuate neurons.
Mol Endocrinol. 1997 Oct;11(11):1709-17. doi: 10.1210/mend.11.11.0016.
2
Chronic central infusion of growth hormone secretagogues: effects on fos expression and peptide gene expression in the rat arcuate nucleus.生长激素促分泌素的慢性中枢输注:对大鼠弓状核中Fos表达和肽基因表达的影响。
Neuroendocrinology. 1999 Aug;70(2):83-92. doi: 10.1159/000054462.
3
The nonpeptide growth hormone secretagogue, MK-0677, activates hypothalamic arcuate nucleus neurons in vivo.非肽类生长激素促分泌素MK-0677可在体内激活下丘脑弓状核神经元。
J Neuroendocrinol. 1998 Feb;10(2):111-8. doi: 10.1046/j.1365-2826.1998.00176.x.
4
Growth hormone-releasing hormone and morphine attenuate growth hormone secretagogue-induced activation of the arcuate nucleus in the male rat.生长激素释放激素和吗啡可减弱生长激素促分泌素诱导的雄性大鼠弓状核激活。
Neuroendocrinology. 1999 Aug;70(2):101-6. doi: 10.1159/000054464.
5
Attenuation of the growth hormone secretagogue induction of Fos protein in the rat arcuate nucleus by central somatostatin action.中枢生长抑素作用对生长激素促分泌素诱导大鼠弓状核Fos蛋白表达的抑制作用
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6
Effects of neonatal administration of octreotide, a long-lasting somatostatin analogue, on growth hormone regulation in the adult rat.长效生长抑素类似物奥曲肽新生期给药对成年大鼠生长激素调节的影响。
Neuroendocrinology. 1996 Feb;63(2):173-80. doi: 10.1159/000126954.
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Somatostatin inhibits alpha-2-adrenergic-induced secretion of growth hormone-releasing hormone.生长抑素抑制α-2-肾上腺素能诱导的生长激素释放激素分泌。
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Somatostatin-14 neurons in the ovine hypothalamus: colocalization with estrogen receptor alpha and somatostatin-28(1-12) immunoreactivity, and activation in response to estradiol.绵羊下丘脑内的生长抑素-14神经元:与雌激素受体α及生长抑素-28(1-12)免疫反应性的共定位,以及对雌二醇的反应性激活。
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9
Growth hormone-releasing hormone (GHRH) neurons in the arcuate nucleus (Arc) of the hypothalamus are decreased in transgenic rats whose expression of ghrelin receptor is attenuated: Evidence that ghrelin receptor is involved in the up-regulation of GHRH expression in the arc.在下丘脑弓状核(Arc)中,胃饥饿素受体表达减弱的转基因大鼠体内,生长激素释放激素(GHRH)神经元数量减少:这证明胃饥饿素受体参与了弓状核中GHRH表达的上调。
Endocrinology. 2006 Sep;147(9):4093-103. doi: 10.1210/en.2005-1619. Epub 2006 May 25.
10
Growth hormone secretagogue activation of the arcuate nucleus and brainstem occurs via a non-noradrenergic pathway.生长激素促分泌素对弓状核和脑干的激活是通过一条非去甲肾上腺素能途径实现的。
J Neuroendocrinol. 2000 Mar;12(3):191-7. doi: 10.1046/j.1365-2826.2000.00398.x.

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