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The chicken type III GnRH receptor homologue is predominantly expressed in the pituitary and exhibits similar ligand selectivity to the type I receptor

机译:鸡III型GnRH受体同源物主要在垂体中表达并表现出与I型受体相似的配体选择性

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摘要

Two GnRH isoforms (cGnRH-I and GnRH-II) and two GnRH receptor subtypes (cGnRH-R-I and cGnRH-R-III) occur in chickens. Differential roles for these molecules in regulating gonadotrophin secretion or other functions are unclear. To investigate this we cloned cGnRH-R-III from a broiler chicken and compared its structure, expression and pharmacological properties with cGnRH-R-I. The broiler cGnRH-R-III cDNA was 100% identical to the sequence reported in the red jungle fowl and white leghorn breed. Pituitary cGnRH-R-III mRNA was ∼1400-fold more abundant than cGnRH-R-I mRNA. Northern analysis indicated a single cGnRH-R-III transcript. A pronounced sex and age difference existed, with higher pituitary transcript levels in sexually mature females versus juvenile females. In contrast, higher expression levels occurred in juvenile males versus sexually mature males. Functional studies in COS-7 cells indicated that cGnRH-R-III has a higher binding affinity for GnRH-II than cGnRH-I (Kd: 0·57 vs 19·8 nM) with more potent stimulation of inositol phosphate production (ED50: 0·8 vs 4·38 nM). Similar results were found for cGnRH-R-I, (Kd: 0·51 vs 10·8 nM) and (ED50: 0·7 vs 2·8 nM). The initial rate of internalisation was faster for cGnRH-R-III than cGnRH-R-I (26 vs 15·8%/min). Effects of GnRH antagonists were compared at the two receptors. Antagonist #27 distinguished between cGnRH-R-I and cGnRH-R-III (IC50: 2·3 vs 351 nM). These results suggest that cGnRH-R-III is probably the major mediator of pituitary gonadotroph function, that antagonist #27 may allow delineation of receptor subtype function in vitro and in vivo and that tissue-specific recruitment of cGnRH-R isoforms has occurred during evolution.
机译:鸡中有两种GnRH亚型(cGnRH-1和GnRH-II)和两种GnRH受体亚型(cGnRH-R-1和cGnRH-R-III)。这些分子在调节促性腺激素分泌或其他功能方面的差异作用尚不清楚。为了对此进行研究,我们从肉鸡中克隆了cGnRH-R-III,并将其结构,表达和药理特性与cGnRH-R-1进行了比较。肉鸡cGnRH-R-III cDNA与红色丛林禽和白色来亨鸡品种中报道的序列100%相同。垂体cGnRH-R-III mRNA比cGnRH-R-1 mRNA丰富约1400倍。 Northern分析表明单个cGnRH-R-III转录物。存在明显的性别和年龄差异,性成熟女性与未成年女性的脑垂体转录水平较高。相比之下,未成年男性与性成熟男性相比表达水平更高。在COS-7细胞中进行的功能研究表明,cGnRH-R-III对GnRH-II的结合亲和力比cGnRH-I高(Kd:0·57对19·8MnM),并且更有效地刺激了磷酸肌醇的产生(ED50: 0·8对4·38 nM)。对于cGnRH-R-1,也发现了类似的结果(Kd:0·51 vs 10·8 nM)和(ED50:0·7 vs 2·8 nM)。 cGnRH-R-III的初始内在化速率比cGnRH-R-I快(26 vs 15·8%/ min)。比较了GnRH拮抗剂在两种受体上的作用。拮抗剂#27在cGnRH-R-1和cGnRH-R-III之间有所区别(IC50:2·3对351MnM)。这些结果表明,cGnRH-R-III可能是垂体促性腺激素功能的主要介质,拮抗剂#27可能在体内和体外描述受体亚型的功能,并且在进化过程中发生了组织特异性的cGnRH-R同工型募集。

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