首页> 美国卫生研究院文献>PLoS Clinical Trials >A Novel Tool for Studying Auxin-Metabolism: The Inhibition of Grapevine Indole-3-Acetic Acid-Amido Synthetases by a Reaction Intermediate Analogue
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A Novel Tool for Studying Auxin-Metabolism: The Inhibition of Grapevine Indole-3-Acetic Acid-Amido Synthetases by a Reaction Intermediate Analogue

机译:一种研究生长素代谢的新工具:通过反应中间体类似物抑制葡萄吲哚-3-乙酸-酰胺基合成酶

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摘要

An important process for the regulation of auxin levels in plants is the inactivation of indole-3-acetic acid (IAA) by conjugation to amino acids. The conjugation reaction is catalysed by IAA-amido synthetases belonging to the family of GH3 proteins. Genetic approaches to study the biological significance of these enzymes have been hampered by large gene numbers and a high degree of functional redundancy. To overcome these difficulties a chemical approach based on the reaction mechanism of GH3 proteins was employed to design a small molecule inhibitor of IAA-amido synthetase activity. Adenosine-5′-[2-(1H-indol-3-yl)ethyl]phosphate (AIEP) mimics the adenylated intermediate of the IAA-conjugation reaction and was therefore proposed to compete with the binding of MgATP and IAA in the initial stages of catalysis. Two grapevine IAA-amido synthetases with different catalytic properties were chosen to test the inhibitory effects of AIEP in vitro. GH3-1 has previously been implicated in the grape berry ripening process and is restricted to two amino acid substrates, whereas GH3-6 conjugated IAA to 13 amino acids. AIEP is the most potent inhibitor of GH3 enzymes so far described and was shown to be competitive against MgATP and IAA binding to both enzymes with Ki-values 17-68-fold lower than the respective Km-values. AIEP also exhibited in vivo activity in an ex planta test system using young grape berries. Exposure to 5–20 µM of the inhibitor led to decreased levels of the common conjugate IAA-Asp and reduced the accumulation of the corresponding Asp-conjugate upon treatment with a synthetic auxin. AIEP therefore represents a novel chemical probe with which to study IAA-amido synthetase function.
机译:调节植物中植物生长素水平的重要过程是通过与氨基酸结合而使吲哚-3-乙酸(IAA)失活。偶联反应由属于GH3蛋白质家族的IAA-酰胺基合成酶催化。大量的基因数目和高度的功能冗余阻碍了研究这些酶生物学意义的遗传方法。为了克服这些困难,采用了一种基于GH3蛋白反应机理的化学方法来设计IAA-酰胺基合成酶活性的小分子抑制剂。腺苷5'-[2-(1H-吲哚-3-基)乙基]磷酸酯(AIEP)模仿IAA偶联反应的腺苷酸化中间体,因此建议在初始阶段与MgATP和IAA的结合竞争的催化作用。选择两种具有不同催化特性的葡萄IAA-酰胺基合成酶,以测试AIEP的体外抑制作用。 GH3-1以前曾参与葡萄浆果的成熟过程,并且仅限于两个氨基酸底物,而GH3-6则将IAA偶联至13个氨基酸。 AIEP是迄今为止所描述的最有效的GH3酶抑制剂,并显示出与MgATP和IAA结合两种酶的竞争性,其Ki值比各自的Km值低17-68倍。 AIEP在使用年轻葡萄浆果的植物试验系统中也表现出体内活性。暴露于5–20 µM的抑制剂会导致普通缀合物IAA-Asp的含量降低,并降低了合成生长素处理后相应Asp缀合物的积累。因此,AIEP代表了一种新型化学探针,可用于研究IAA-酰胺基合成酶的功能。

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