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首页> 外文期刊>Journal of Medicinal Chemistry >Design, Synthesis, and Biological Assessment of Biased Allosteric Modulation of the Urotensin II Receptor Using Achiral 1,3,4-Benzotriazepin-2-one Turn Mimics
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Design, Synthesis, and Biological Assessment of Biased Allosteric Modulation of the Urotensin II Receptor Using Achiral 1,3,4-Benzotriazepin-2-one Turn Mimics

机译:使用Achiral1,3,4-苯并噻嗪-2-One转弯模拟物尿囊蛋白II受体偏见的构偏异调节的设计,合成和生物学评估

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Benzotriazepin-2-ones were designed to mimic the suggested bioactive gamma-turn conformation of the Bip-Lys-Tyr tripeptide in Urocontrin ([Bip(4)]URP), which modulates the urotensin II receptor (UT) and differentiates the effects of the endogenous ligands urotensin II (UII) and urotensin II-related peptide (URP). Twenty-six benzotriazepin-2-ones were synthesized by acylation of anthranilate-derived amino ketones with an aza-glycine equivalent, chemoselective nitrogen functionalization, and ring closure. Several mimics exhibited selective modulatory effects on hUII- and URP-associated vasoconstriction in an ex vivo rat aortic ring bioassay. The C-5 p-hydroxyphenethenyl benzotriazepin-2-one 20g decreased hUII potency and efficacy without changing URP induced vasoconstriction. Its saturated phenethyl counterpart 23g decreased URP potency without influencing hUII-mediated contraction. To our knowledge, 20g and 23g represent the first achiral molecules that modulate selectively hUII and URP biological activities. Effectively synthesized, benzotriaepin-2-one turn mimics offer the potential to differentiate the respective roles, signaling pathways, and phenotypic outcomes of hUII and URP in the UT system.
机译:苯并噻己素-2-均设计用于模拟尿道素中的BIP-Lys-Tyr三肽([BIP(4)] URP)的建议的生物活性γ-转象限形,其调节尿道素II受体(UT)并区分效果内源性配体核心素II(UII)和尿黄素II相关肽(URP)。通过酰胺衍生的氨基酮与AZA-甘氨酸当量,化学选择性氮官能化和环封闭来合成二十六个苯并二氮嘧啶-2-苯并噻嗪-2-苯并噻嗪-2-苯并酮。几种模拟物表现出对EXVivo RAY主动脉环生物测定中的HUII-和URP相关血管收缩的选择性调节作用。 C-5羟基乙烯烯基苯并二氮杂苯基-2-1 20g降低了Huii效力和功效,而不改变URP诱导血管收缩。其饱和苯乙基对应物23g降低了URP效力而不影响Huii介导的收缩。据我们所知,20G和23G代表了选择性地调节HUII和URP生物活性的第一甲基分子。有效合成,苯并拉里亚普林-2-一转模仿提供了区分HUII和URP在UT系统中的各自作用,信号通路和表型结果的可能性。

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