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一种单链四结构域糖蛋白激素类似物在体内引发多种激素活性。

A single-chain tetradomain glycoprotein hormone analog elicits multiple hormone activities in vivo.

作者信息

Garcia-Campayo Vicenta, Boime Irving, Ma Xiaoping, Daphna-Iken Dorit, Kumar T Rajendra

机构信息

Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Biol Reprod. 2005 Feb;72(2):301-8. doi: 10.1095/biolreprod.104.031732. Epub 2004 Sep 22.

Abstract

We previously demonstrated that genetically linking one or more of the glycoprotein hormone-specific beta subunit genes to the common alpha subunit resulted in single-chain analogues that were bioactive in vitro. The ability of such large structures to bind their cognate receptors with high affinity supported the hypothesis that extensive flexibility exists between the ligand and receptor to establish a functional complex. To further characterize the extent of this conformational flexibility, we engineered a single-chain analogue that consists of sequentially linked thyroid-stimulating hormone (TSH) beta, follicle-stimulating hormone (FSH) beta, and chorionic gonadotropin (CG) beta subunits to the alpha subunit and expressed this chimera in transfected CHO (Chinese hamster ovary) cells. Because the four subunits are genetically linked and expressed as a single-chain, this analogue presumably lacks significant native structural features of the individual heterodimers. However, it exhibited FSH, CG, and TSH activities in vitro. Here, we test whether this nonnative structure would be stable in vivo and thus biologically active. Using a variety of bioassay protocols, we demonstrate that the analogue elicits multihormone activities when injected in vivo. First, treatment with the analogue caused increases in ovarian and uterine weights and resulted in elevated serum estradiol. Second, the analogue-stimulated ovarian follicle growth and pharmacologically rescued in vivo FSH deficiency similar to recombinant human FSH or equine CG (eCG) as confirmed by induction of aromatase in the ovaries of FSHbeta knockout mice. Third, in a superovulation protocol, when primed with eCG, the analogue elicited a dose-dependent ovulatory response comparable with that by native heterodimeric human CG. Finally, the analogue-stimulated thyroxin production in hypothyroid mice similar to the pituitary-derived human TSH standard. Based on these data, we conclude that a single-chain tetradomain glycoprotein hormone analogue, despite its presumed altered conformation, is stable and biologically active in vivo. Our results establish the permissiveness and conformational plasticity with which the glycoprotein hormones are recognized in vivo by their target cell receptors.

摘要

我们之前证明,将一种或多种糖蛋白激素特异性β亚基基因与共同的α亚基进行基因连接,会产生在体外具有生物活性的单链类似物。这种大结构以高亲和力结合其同源受体的能力支持了这样一种假说,即配体和受体之间存在广泛的灵活性以形成功能复合物。为了进一步表征这种构象灵活性的程度,我们构建了一种单链类似物,它由依次连接到α亚基的促甲状腺激素(TSH)β、促卵泡激素(FSH)β和绒毛膜促性腺激素(CG)β亚基组成,并在转染的中国仓鼠卵巢(CHO)细胞中表达这种嵌合体。由于这四个亚基是基因连接并作为单链表达的,这种类似物可能缺乏各个异源二聚体的显著天然结构特征。然而,它在体外表现出FSH、CG和TSH活性。在此处,我们测试这种非天然结构在体内是否稳定并因此具有生物活性。使用各种生物测定方案,我们证明该类似物在体内注射时会引发多种激素活性。首先,用该类似物处理导致卵巢和子宫重量增加,并使血清雌二醇升高。其次,该类似物刺激卵巢卵泡生长,并在体内药理学上挽救FSH缺乏,类似于重组人FSH或马CG(eCG),这在FSHβ基因敲除小鼠的卵巢中通过芳香化酶的诱导得到证实。第三,在超排卵方案中,当用eCG预处理时,该类似物引发了与天然异源二聚体人CG相当的剂量依赖性排卵反应。最后,该类似物在甲状腺功能减退小鼠中刺激甲状腺素产生,类似于垂体来源的人TSH标准品。基于这些数据,我们得出结论,一种单链四结构域糖蛋白激素类似物,尽管其构象可能发生了改变,但在体内是稳定且具有生物活性的。我们的结果确立了糖蛋白激素在体内被其靶细胞受体识别时的宽容性和构象可塑性。

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