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从天然产物的ZINC数据库中挖掘特异性的、睾酮样的OXER1拮抗剂。

Mining the ZINC database of natural products for specific, testosterone-like, OXER1 antagonists.

作者信息

Panagiotopoulos Athanasios A, Konstantinou Evangelia, Pirintsos Stergios A, Castanas Elias, Kampa Marilena

机构信息

Laboratory of Experimental Endocrinology, University of Crete, School of Medicine, Heraklion, Greece.

Department of Biology, School of Science and Technology, University of Crete, Heraklion, Greece; Botanical Garden, University of Crete, Rethymnon, Greece.

出版信息

Steroids. 2023 Nov;199:109309. doi: 10.1016/j.steroids.2023.109309. Epub 2023 Sep 9.

Abstract

OXER1, the receptor for the oxidized arachidonic acid metabolite 5-oxo-ETE has been reported to play a significant role in inflammatory responses, being responsible for leucocyte chemotactic responses. Recently, we have identified OXER1 (GPR170) as a membrane receptor for androgens in prostate and breast cancer cells. Testosterone action via OXER1 induces specific Ca release from intracellular organelles, modifies polymerized actin distribution induces apoptosis and decreases cancer cell migration. These actions are antagonized by 5-oxo-ETE. In addition, 5-oxo-ETE through a G protein decreases cAMP, an action antagonized by testosterone. In this work, we mined the ZINC15 database, using QSAR, for natural compounds able to signal through G and G simultaneously, mimicking testosterone actions, as well as for specific G interactors, inhibiting 5-oxo-ETE tumor promoting actions. We were able to identify four druggable G and seven G specific OXER1 interactors. We further confirmed by bio-informatic methods their binding to the 5-oxo-ETE/testosterone binding groove of the receptor, their ADME properties and their possible interaction with other receptor and/or enzyme targets. Two compounds, ZINC04017374 (Naphthofluorescein) and ZINC08589130 (Puertogaline A) were purchased, tested in vitro and confirmed their OXER1 G and G activity, respectively. The methodology followed is useful for a better understanding of the mechanism by which OXER1 mediates its actions, it has the potential to provide structural insights, in order to design small molecular specific interactors and ultimately design new anti-inflammatory and anti-cancer agents. Finally, the methodology may also be useful for identifying specific agonists/antagonists of other GPCRs.

摘要

据报道,氧化型花生四烯酸代谢物5-氧代-ETE的受体OXER1在炎症反应中起重要作用,负责白细胞趋化反应。最近,我们已将OXER1(GPR170)鉴定为前列腺和乳腺癌细胞中雄激素的膜受体。通过OXER1的睾酮作用可诱导细胞内细胞器释放特定的钙,改变聚合肌动蛋白分布,诱导细胞凋亡并减少癌细胞迁移。这些作用被5-氧代-ETE拮抗。此外,5-氧代-ETE通过G蛋白降低cAMP,这一作用被睾酮拮抗。在这项工作中,我们利用定量构效关系(QSAR)在ZINC15数据库中挖掘能够同时通过Gα和Gβ信号传导、模拟睾酮作用的天然化合物,以及能够抑制5-氧代-ETE促肿瘤作用的特定Gα相互作用剂。我们能够鉴定出四种可成药的Gα和七种Gβ特异性OXER1相互作用剂。我们通过生物信息学方法进一步证实了它们与受体的5-氧代-ETE/睾酮结合凹槽的结合、它们的药物代谢动力学性质以及它们与其他受体和/或酶靶点的可能相互作用。购买了两种化合物ZINC04017374(萘荧光素)和ZINC08589130(普托加林A),分别进行体外测试并证实了它们的OXER1 Gα和Gβ活性。所采用的方法有助于更好地理解OXER1介导其作用的机制,有潜力提供结构见解,以便设计小分子特异性相互作用剂并最终设计新的抗炎和抗癌药物。最后,该方法也可能有助于鉴定其他G蛋白偶联受体的特异性激动剂/拮抗剂。

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