苯并萘酚-β-D-O-糖苷的合成、作为β-糖苷酶活性底物的评估以及分子研究。

Organic and Medicinal Chemistry Letters Pub Date : 2014-05-17 eCollection Date: 2014-01-01 DOI:10.1186/2191-2858-4-2
Marco Brito-Arias, Carlos Aguilar-Lemus, Pamela B Hurtado-Ponce, Guadalupe Martínez-Barrón, Miguel Ibañez-Hernandez
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摘要

背景:苯并萘酚-β-D-O-糖苷是检测β-糖苷酶酶活性的替代底物,β-糖苷酶参与了各种重要过程。这些偶氮化合物目前被用作治疗结肠疾病的原药,因为肠道菌群中存在 β-糖苷酶活性,因此可以在特定部位释放药物:通过 2-萘酚钠盐与氨基糖苷 1a 和 1b 的偶联反应,在不影响 O-糖苷键稳定性的弱酸性条件下,通过重氮盐条件制备了苯并萘酚-β-D-O-葡萄糖苷 3a 和半乳糖苷 3b。得到的苯并萘酚苷 2a 和 2b 经过脱保护后,定量得到苯并萘酚苷 3a 和 3b。半乳糖苷 3b 被用作体外 β-半乳糖苷酶酶活性的底物,在释放出偶氮发色团后显示出很强的吸光度。此外,还进行了对接研究,以确定配体的最佳姿态以及配体与活性位点残基之间的相互作用:为合成苯并萘酚苷而开发的方法被证明可方便地在糖苷键存在的情况下生成偶氮官能团,该苷适合作为治疗结肠疾病的替代底物和潜在有用的原药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Synthesis of phenylazonaphtol-β-D-O-glycosides, evaluation as substrates for beta-glycosidase activity and molecular studies.

Background: Phenylazonaphtol-β-D-O-glycosides are alternative substrates for the detection of enzymatic activity of β-glycosidases which are involved in various important processes. These azoic compounds are currently exploited as prodrugs for colonic disease due the presence of β-glycosidase activity in the gut flora and therefore allowing the release of the drug at the specific site.

Results: Phenylazonaphtol-β-D-O-glucoside 3a and galactoside 3b were prepared via diazonium salt conditions under weak acidic conditions which do not compromise the O-glycosidic bond stability, by coupling reaction between 2-naphtol sodium salt with aminoglycosides 1a and 1b. The resulting phenylazonaphtol glycosides 2a and 2b were deprotected affording the phenylazonaphtol glycosides 3a and 3b in quantitative yield. The galactoside glycoside 3b was assayed as substrate for in vitro β-galactosidase enzymatic activity showing strong absorbance after releasing of the azoic chromophore. Also, docking studies were performed to determine the best pose as well as the interactions between the ligand and the residues located at the active site.

Conclusions: The methodology developed for synthesizing the phenylazonaphtol glycosides described proved to be convenient for generating azoic functionalities in the presence of glycosidic bonds and the glycosides suitable as alternative substrates and potentially useful prodrugs in the treatment of colonic diseases.

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