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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >A signaling-selective, nanomolar potent allosteric low molecular weight agonist for the human luteinizing hormone receptor.
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A signaling-selective, nanomolar potent allosteric low molecular weight agonist for the human luteinizing hormone receptor.

机译:人黄体生成激素受体的信号选择性,纳摩尔强效变构低分子量激动剂。

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摘要

Luteinizing hormone (LH) and human chorionic gonadotropin (hCG) activate the LH receptor/cyclic AMP (cAMP) signaling pathway to induce ovulation. As an alternative to parenterally administered hCG to treat anovulatory infertility, orally active low molecular weight (LMW) LHR agonists have been developed at Organon. In this paper, we present the mechanism of action of a prototypic, nanomolar potent and almost full LHR agonist, Org 43553. Org 43553 interacts with the endodomain of the LHR, whereas LH acts via the N-terminal exodomain. LH stimulates the cAMP pathway with an EC50 of 35 pM, but this stimulation is not antagonized by simultaneous incubation with Org 43553. At nanomolar concentrations, LH also stimulates phospholipase C (PLC), but Org 43553 is hardly able to do so. In contrast, Org 43553 inhibits LH-induced PLC (IC50 approximately 10 nM). While Org 43553 stimulates dissociation of [125I]hCG from the LHR and reduces [125I]hCG binding, LH reduces specific [3H]Org 43553 binding. We conclude that Org 43553 is a signaling-selective, allosteric LHR agonist. We hypothesize that Org 43553 and LH induce a similar LHR conformation necessary for activating adenylyl cyclase, which initiates most, if not all, physiological responses of LH.
机译:黄体生成激素(LH)和人绒毛膜促性腺激素(hCG)激活LH受体/环AMP(cAMP)信号传导途径以诱导排卵。作为胃肠外给药的hCG治疗无排卵性不孕症的替代方法,Organon开发了口服活性低分子量(LMW)LHR激动剂。在本文中,我们介绍了原型,纳摩尔有效且几乎完整的LHR激动剂Org 43553的作用机理。Org43553与LHR的内域相互作用,而LH通过N末端外域起作用。 LH以35 pM的EC50刺激cAMP途径,但是与Org 43553同时孵育不会抵消这种刺激。在纳摩尔浓度下,LH还刺激磷脂酶C(PLC),但是Org 43553几乎不能这样做。相反,Org 43553抑制LH诱导的PLC(IC50约为10 nM)。尽管Org 43553刺激了[125I] hCG与LHR的解离并降低了[125I] hCG结合,但LH降低了[3H] Org 43553的特异性结合。我们得出结论,Org 43553是一种信号选择性的变构LHR激动剂。我们假设Org 43553和LH诱导了激活腺苷酸环化酶所必需的类似LHR构象,后者启动了LH的大多数(即使不是全部)生理反应。

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