Department of Physiology, Monash University, Clayton, Victoria, Australia.
Endocrinology. 2012 Nov;153(11):5452-66. doi: 10.1210/en.2012-1622. Epub 2012 Sep 7.
Ghrelin is the endogenous ligand for the GH secretagogue receptor (GHSR) and robustly stimulates GH release from the anterior pituitary gland. Ghrelin also regulates the secretion of anterior pituitary hormones including TSH, LH, prolactin (PRL), and ACTH. However, the relative contribution of a direct action at the GHSR in the anterior pituitary gland vs. an indirect action at the GHSR in the hypothalamus remains undefined. We used a novel GHSR-enhanced green fluorescent protein (eGFP) reporter mouse to quantify GHSR coexpression with GH, TSH, LH, PRL, and ACTH anterior pituitary cells in males vs. females and in chow-fed or calorie-restricted (CR) mice. GHSR-eGFP-expressing cells were only observed in anterior pituitary. The number of GHSR-eGFP-expressing cells was higher in male compared with females, and CR did not affect the GHSR-eGFP cell number. Double staining revealed 77% of somatotrophs expressed GHSR-eGFP in both males and females. Nineteen percent and 12.6% of corticotrophs, 21% and 9% of lactotrophs, 18% and 19% of gonadotrophs, and 3% and 9% of males and females, respectively, expressed GHSR-eGFP. CR increased the number of TSH cells, but suppressed the number of lactotrophs and gonadotrophs, expressing GHSR-eGFP compared with controls. These studies support a robust stimulatory action of ghrelin via the GHSR on GH secretion and identify a previously unknown sexual dimorphism in the GHSR expression in the anterior pituitary. CR affects GHSR-eGFP expression on lactotrophs, gonadotrophs, and thyrotrophs, which may mediate reproductive function and energy metabolism during periods of negative energy balance. The low to moderate expression of GHSR-eGFP suggests that ghrelin plays a minor direct role on remaining anterior pituitary cells.
胃饥饿素是生长激素促分泌素受体(GHSR)的内源性配体,能强有力地刺激垂体前叶释放生长激素。胃饥饿素还调节包括 TSH、LH、催乳素(PRL)和 ACTH 在内的垂体前叶激素的分泌。然而,胃饥饿素在垂体前叶通过 GHSR 的直接作用与在下丘脑通过 GHSR 的间接作用之间的相对贡献仍未确定。我们使用新型 GHSR-增强型绿色荧光蛋白(eGFP)报告小鼠来定量分析雄性和雌性、正常进食和热量限制(CR)小鼠垂体前叶中 GH、TSH、LH、PRL 和 ACTH 与 GHSR 的共表达。仅在前垂体中观察到 GHSR-eGFP 表达细胞。与雌性相比,雄性中 GHSR-eGFP 表达细胞的数量更高,CR 并不影响 GHSR-eGFP 细胞数量。双重染色显示,在雄性和雌性中,77%的生长激素细胞表达 GHSR-eGFP。19%和 12.6%的促肾上腺皮质激素细胞、21%和 9%的催乳素细胞、18%和 19%的促性腺激素细胞和 3%和 9%的雄性和雌性分别表达 GHSR-eGFP。与对照组相比,CR 增加了 TSH 细胞的数量,但抑制了表达 GHSR-eGFP 的催乳素细胞和促性腺激素细胞的数量。这些研究支持胃饥饿素通过 GHSR 对 GH 分泌的强烈刺激作用,并确定了垂体前叶中 GHSR 表达的先前未知的性别二态性。CR 影响表达 GHSR-eGFP 的催乳素细胞、促性腺激素细胞和促甲状腺激素细胞,这可能在负能量平衡期间调节生殖功能和能量代谢。GHSR-eGFP 的低至中度表达表明,胃饥饿素在剩余的垂体前叶细胞中仅发挥次要的直接作用。