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Structure-activity relationships and mechanism of action of Eph-ephrin antagonists: interaction of cholanic acid with the EphA2 receptor

机译:Eph-ephrin拮抗剂的结构 - 活性关系与作用机制:苯磺酸与Epha2受体的相互作用

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摘要

The Eph–ephrin system, including the EphA2 receptor and the ephrin-A1 ligand, plays a critical role in tumor and vascular functions during carcinogenesis. We previously identified (3α,5β)-3-hydroxycholan-24-oic acid (lithocholic acid) as an Eph-ephrin antagonist able to inhibit EphA2 receptor activation and therefore potentially useful as a novel EphA2 receptor targeting agent. Here, we explore the structure-activity relationships of a focused set of lithocholic acid derivatives, based on molecular modelling investigation and displacement binding assays. Our exploration shows that while the 3-α-hydroxyl group of lithocholic acid has a negligible role in the recognition of the EphA2 receptor, its carboxylate group is critical for disrupting the binding of ephrin-A1 to the EphA2. As a result of our investigation, we identified (5β)-cholan-24-oic acid (cholanic acid) as a novel compound that competitively inhibits EphA2-ephrin-A1 interaction with higher potency than lithocholic acid. Surface plasmon resonance analysis indicates that cholanic acid binds specifically and reversibly to the ligand-binding domain of EphA2, with a steady-state dissociation constant (KD) in the low micromolar range. Furthermore, cholanic acid blocks the phosphorylation of EphA2 and cell retraction and rounding in PC3 prostate cancer cells, two effects that depend on EphA2 activation by the ephrin-A1 ligand. These findings suggest that cholanic acid can be used as a template structure to design effective EphA2 antagonists, with potential impact in the elucidation of the role played by this receptor in pathological conditions.
机译:Eph-Ephrin系统,包括EphA2受体和Ephrin-A1配体,在致癌过程中在肿瘤和血管功能中起重要作用。我们以前鉴定了(3α,5β)-3-羟基胆烷-24-甲酸盐(锂电酸),作为能够抑制Epha2受体活化的Eph-Ephrin拮抗剂,因此可能可用作新的EphA2受体靶向剂。这里,我们基于分子建模研究和位移结合测定探索聚焦锂酸衍生物的结构 - 活性关系。我们的探索表明,虽然锂色酸的3-α-羟基在识别EPHA2受体中具有可忽略的作用,但其羧酸盐基团对于破坏Ephrin-A1的结合至关重要。由于我们的研究,我们鉴定了(5β) - 氯烷-24-伊酸(胆酸)作为一种新的化合物,其竞争性地抑制与锂色酸更高效力的Epha2-Ephrin-A1相互作用。表面等离子体共振分析表明苯磺酸特异性且可逆地与Epha2的配体结合结构域结合,在低微摩拉范围内具有稳态解离常数(Kd)。此外,苯磺酸阻断EphA2和细胞缩回的磷酸化和在PC3前列腺癌细胞中的舍入,两种效应取决于Ephrin-A1配体的EphA2活化。这些发现表明,苯磺酸可以用作设计有效的Epha2拮抗剂的模板结构,潜在的影响在阐明了该受体在病理条件下发挥的作用。

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