设计和合成具有生物活性的新型甾体-大环衍生物。

Journal of Chemical Biology Pub Date : 2017-02-23 eCollection Date: 2017-04-01 DOI:10.1007/s12154-017-0165-0
Maria López-Ramos, Lauro Figueroa-Valverde, Socorro Herrera-Meza, Marcela Rosas-Nexticapa, Francisco Díaz-Cedillo, Elodia García-Cervera, Eduardo Pool-Gómez, Regina Cahuich-Carrillo
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引用次数: 0

摘要

本研究的目的是评估一种新的大环衍生物(化合物 11)的正性肌力作用,并确定其生物活性的分子机制。第一步是合成大环衍生物,通过一系列反应制备了多种甾体衍生物,如(a) 甾体嘧啶酮(3 和 4)、(b) 甾体氨基(5)、(c) 甾体亚氨基(6)、(d) 酯甾体(7 和 8)以及 (e) 氨基甾体(9 和 10)。最后,通过去除 10 的叔丁基二甲基硅烷片段制备了 11。利用 Langendorff 模型在离体大鼠心脏上评估了化合物对灌注压和血管阻力的生物活性。在哌唑嗪、美托洛尔、吲哚美辛、硝苯地平和氟他胺存在的情况下,对 11 的促肌力活性进行了评估,以确定其分子机制。利用 Docking 模型进行了理论实验,以评估雄激素受体与 11 的潜在相互作用。结果表明,只有这种大环衍生物对灌注压和血管阻力产生的变化被转化为正性肌力作用,而这种作用被氟他胺阻断;这些数据表明,这种大环衍生物诱导的正性肌力活性是通过雄激素受体激活产生的。理论结果表明,大环衍生物与雄激素受体的相互作用涉及多个氨基酸残基,如 Leu704、Asn705、Met780、Cys784、Met749、Leu762、Phe764、Ser778 和 Met787。总之,所有这些数据表明,大环衍生物的正性肌力活性可能取决于其化学结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design and synthesis of a new steroid-macrocyclic derivative with biological activity.

Design and synthesis of a new steroid-macrocyclic derivative with biological activity.

Design and synthesis of a new steroid-macrocyclic derivative with biological activity.

Design and synthesis of a new steroid-macrocyclic derivative with biological activity.

The aims of this study were to evaluate the positive inotropic effect of a new macrocyclic derivative (compound 11) and characterize the molecular mechanism involved in its biological activity. The first step was achieved by synthesis of a macrocyclic derivative involving a series of reactions for the preparation of several steroid derivatives such as (a) steroid-pyrimidinone (3 and 4), (b) steroid-amino (5), (c) steroid-imino (6), (d) ester-steroid (7 and 8), and (e) amido-steroid (9 and 10). Finally, 11 was prepared by removing the tert-butyldimethylsilane fragment of 10. The biological activity of compounds on perfusion pressure and vascular resistance was evaluated on isolated rat heart using the Langendorff model. The inotropic activity of 11 was evaluated in presence of prazosin, metoprolol, indomethacin, nifedipine, and flutamide to characterize its molecular mechanism. Theoretical experiments were carried out with a Docking model, to assess potential interactions of androgen receptor with 11. The results showed that only this macrocyclic derivative exerts changes on perfusion pressure and vascular resistance translated as the positive inotropic effect, and this effect was blocked with flutamide; these data indicate that the positive inotropic activity induced by this macrocyclic derivative was via androgen receptor activation. The theoretical results indicated that the interaction of the macrocyclic derivative with the androgen receptor involves several amino acid residues such as Leu704, Asn705, Met780, Cys784, Met749, Leu762, Phe764, Ser778, and Met787. In conclusion, all these data suggest that the positive inotropic activity of the macrocyclic derivative may depend on its chemical structure.

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