首页> 外文期刊>Journal of the American Chemical Society >Substrate-Selective Supramolecular Tandem Assays: Monitoring Enzyme Inhibition of Arginase and Diamine Oxidase by Fluorescent Dye Displacement from Calixarene and Cucurbituril Macrocycles
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Substrate-Selective Supramolecular Tandem Assays: Monitoring Enzyme Inhibition of Arginase and Diamine Oxidase by Fluorescent Dye Displacement from Calixarene and Cucurbituril Macrocycles

机译:底物选择性超分子串联测定:通过杯染料从杯芳烃和西葫芦大环化合物的荧光染料置换监测精氨酸酶和二胺氧化酶的酶抑制。

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摘要

A combination of moderately selective host-guest binding with the impressive specificity of enzymatic transformations allows the real-time monitoring of enzymatic reactions in a homogeneous solution. The resulting enzyme assays ("supramolecular tandem assays") exploit the dynamic binding of a fluorescent dye with a macrocyclic host in competition with the binding of the substrate and product. Two examples of enzymatic reactions were investigated: the hydrolysis of arginine to ornithine catalyzed by arginase and the oxidation of cadaverine to 5-aminopentanal by diamine oxidase, in which the substrates have a higher affinity to the macrocycle than the products ("substrate-selective assays"). The depletion of the substrate allows the fluorescent dye to enter the macrocycle in the course of the enzymatic reaction, which leads to the desired fluorescence response. For arginase, p-sulfonatocalix[4]arene was used as the macrocycle, which displayed binding constants of 6400 M~(-1) with arginine, 550 M~(-1) with ornithine, and 60 000 M~(-1) with the selected fluorescent dye (1-aminomethyl-2,3-diazabicyclo[2.2.2]oct-2-ene); the dye shows a weaker fluorescence in its complexed state, which leads to a switch-off fluorescence response in the course of the enzymatic reaction. For diamine oxidase, cucurbit[7]uril (CB7) was used as the macrocycle, which showed binding constants of 4.5 ×10~6 M~(-1) with cadaverine, 1.1 ×10~5 M~(-1) with 1-aminopentane (as a model for the thermally unstable 1-aminopentanal), and 2.9 × 10~5 M~(-1) with the selected fluorescent dye (acridine orange, AO); AO shows a stronger fluorescence in its complexed state, which leads to a switch-on fluorescence response upon enzymatic oxidation. It is demonstrated that tandem assays can be successfully used to probe the inhibition of enzymes. Inhibition constants were estimated for the addition of known inhibitors, i.e., S-(2-boronoethyl)-L-cysteine and 2(S)-amino-6-boronohexanoic acid for arginase and potassium cyanide for diamine oxidase. Through the sequential coupling of a "product-selective" with a "substrate-selective" assay it was furthermore possible to monitor a multistep biochemical pathway, namely the decarboxylation of lysine to cadaverine by lysine decarboxylase followed by the oxidation of cadaverine by diamine oxidase. This "domino tandem assay" was performed in the same solution with a single reporter pair (CB7/AO).
机译:适度选择性的宿主-客体结合与令人印象深刻的酶促转化特异性相结合,可以在均相溶液中实时监测酶促反应。所得的酶测定法(“超分子串联测定法”)利用荧光染料与大环宿主的动态结合与底物和产物的结合竞争。研究了两个酶促反应的例子:精氨酸酶催化精氨酸水解为鸟氨酸,二胺氧化酶将尸胺氧化为5-氨基戊醛,其中底物对大环的亲和力高于产物(“底物选择性测定” ”)。底物的耗尽使荧光染料在酶促反应过程中进入大环,从而导致所需的荧光响应。对于精氨酸酶,使用p-sulfonatocalix [4]芳烃作为大环,其与精氨酸的结合常数为6400 M〜(-1),与鸟氨酸的结合常数为550 M〜(-1)和60000 M〜(-1)用选定的荧光染料(1-氨基甲基-2,3-二氮杂双环[2.2.2] oct-2-ene);染料在其络合状态下显示较弱的荧光,从而在酶促反应过程中导致关闭的荧光响应。对于二胺氧化酶,以葫芦[7] uril(CB7)为大环,与尸胺的结合常数为4.5×10〜6 M〜(-1),与1的结合常数为1.1×10〜5 M〜(-1)。 -氨基戊烷(作为热不稳定的1-氨基戊醛的模型),使用所选的荧光染料(ac啶橙,AO)得​​到2.9×10〜5 M〜(-1); AO在其复合状态下显示出更强的荧光,这导致酶促氧化后的开启荧光响应。已证明串联测定法可成功用于探测酶的抑制作用。估计添加已知抑制剂的抑制常数,即对于精氨酸酶而言是S-(2-硼乙基)-L-半胱氨酸和对于二胺氧化酶而言是2(S)-氨基-6-硼羟基己酸和氰化钾。通过“产物选择性”测定法与“底物选择性”测定法的顺序偶联,还可以监测多步生化途径,即赖氨酸脱羧酶将赖氨酸脱羧为尸胺,然后通过二胺氧化酶将尸胺氧化。该“多米诺串联试验”是在同一溶液中使用单个报告子对(CB7 / AO)进行的。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第32期|11558-11570|共13页
  • 作者单位

    School of Engineering and Science, Jacobs University Bremen, Campus Ring 1,D-28759 Bremen, Germany;

    School of Engineering and Science, Jacobs University Bremen, Campus Ring 1,D-28759 Bremen, Germany;

    School of Engineering and Science, Jacobs University Bremen, Campus Ring 1,D-28759 Bremen, Germany;

    School of Engineering and Science, Jacobs University Bremen, Campus Ring 1,D-28759 Bremen, Germany;

    School of Engineering and Science, Jacobs University Bremen, Campus Ring 1,D-28759 Bremen, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:12

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