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首页> 外文期刊>Endocrinology >The hinge region of the TSH receptor stabilizes ligand binding and determines different signaling profiles of human and bovine TSH.
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The hinge region of the TSH receptor stabilizes ligand binding and determines different signaling profiles of human and bovine TSH.

机译:TSH受体的铰链区可稳定配体结合并确定人和牛TSH的不同信号传导特征。

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摘要

The hinge region (HinR) is a variable structure of glycoprotein hormone receptors. Its amino acid composition and length is different for glycoprotein hormone receptors and connects the ligand binding domain with the serpentine domain. The role of the HinR of the receptors for TSH, follitropin (FSH), and LH/choriogonadotropin (LHCG) in receptor and signaling specificity is unknown. To investigate the role of the HinR for ligand binding, signal generation, and for the transmission of the signal towards the serpentine domain, we replaced the HinR of the TSH receptor (TSHR) by those of LHCG receptor and FSH receptor and introduced constitutively activating mutations and one mutation deficient for bovine (b)TSH binding in these chimeras. Functional characterization of the TSHR variants was carried out after transient transfection of COS-7 cells by determination of the cell surface expression, ligand binding, and recombinant human (rh)TSH or bTSH activation of second messengers. We show that the HinR of the TSHR stabilizes hormone binding regarding ligand affinity and retention time of the bound ligand as determined by dissociation experiments. Introduction of a constitutively activating extracellular loop mutation in these constructs lead to partially restored binding patterns. These findings indicate that the HinR-extracellular loop interface is besides signaling also important for bTSH binding. Furthermore, data for G protein signaling reveal that the activity of bTSH, but not of rhTSH, depends on the TSHR HinR, which was indicated by a significant right shift in the dose-response curves for G(s) and G(q) activation for TSHR chimeras harboring the LHCG receptor and FSH receptor HinR, respectively. Moreover, we identified different G protein signaling profiles for bTSH and rhTSH, which cannot be explained by the characterized HinR. For future studies regarding structure and function of the TSHR, it will be necessary to characterize TSHR variants with both or more ligands.
机译:铰链区(HinR)是糖蛋白激素受体的可变结构。对于糖蛋白激素受体,其氨基酸组成和长度是不同的,并且将配体结合结构域与蛇形结构域相连。 TSH,促卵泡激素(FSH)和LH /卵母促性腺激素(LHCG)受体的HinR在受体和信号传导特异性中的作用尚不清楚。为了研究HinR在配体结合,信号产生以及信号向蛇形结构域传递中的作用,我们用LHCG受体和FSH受体取代了TSH受体(TSHR)的HinR,并引入了组成型激活突变在这些嵌合体中,一种缺乏牛(b)TSH结合的突变。通过确定细胞表面表达,配体结合以及第二信使的重组人(rh)TSH或bTSH活化来瞬时转染COS-7细胞后,对TSHR变体进行功能表征。我们显示,TSHR的HinR可以通过解离实验确定与配体亲和力和结合的配体的保留时间有关的激素结合。在这些构建体中引入组成性活化的细胞外环突变导致部分恢复的结合模式。这些发现表明,除了信号传导外,HinR-细胞外环界面对于bTSH结合也很重要。此外,有关G蛋白信号的数据显示,bTSH的活性而不是rhTSH的活性取决于TSHR HinR,这由G(s)和G(q)激活的剂量反应曲线显着右移表示TSHR嵌合体分别具有LHCG受体和FSH受体HinR。此外,我们鉴定了bTSH和rhTSH的不同G蛋白信号转导谱,这不能用特征性HinR来解释。对于有关TSHR的结构和功能的未来研究,有必要用两个或多个配体表征TSHR变体。

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