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荧光标记的 ATP 类似物用于直接监测泛素激活。

Fluorescently Labelled ATP Analogues for Direct Monitoring of Ubiquitin Activation.

机构信息

Department of Chemistry, University of Konstanz, Universitätsstraße 10, 78457, Konstanz, Germany.

Department of Biology, University of Konstanz, Universitätsstraße 10, 78457, Konstanz, Germany.

出版信息

Chemistry. 2020 May 15;26(28):6279-6284. doi: 10.1002/chem.202001091. Epub 2020 Apr 28.

Abstract

Simple and robust assays to monitor enzymatic ATP cleavage with high efficiency in real-time are scarce. To address this shortcoming, we developed fluorescently labelled adenosine tri-, tetra- and pentaphosphate analogues of ATP. The novel ATP analogues bear - in contrast to earlier reports - only a single acridone-based dye at the terminal phosphate group. The dye's fluorescence is quenched by the adenine component of the ATP analogue and is restored upon cleavage of the phosphate chain and dissociation of the dye from the adenosine moiety. Thereby the activity of ATP-cleaving enzymes can be followed in real-time. We demonstrate this proficiency for ubiquitin activation by the ubiquitin-activating enzymes UBA1 and UBA6 which represents the first step in an enzymatic cascade leading to the covalent attachment of ubiquitin to substrate proteins, a process that is highly conserved from yeast to humans. We found that the efficiency to serve as cofactor for UBA1/UBA6 very much depends on the length of the phosphate chain of the ATP analogue: triphosphates are used poorly while pentaphosphates are most efficiently processed. Notably, the novel pentaphosphate-harbouring ATP analogue supersedes the efficiency of recently reported dual-dye labelled analogues and thus, is a promising candidate for broad applications.

摘要

实时高效监测酶促 ATP 裂解的简单而稳健的测定方法仍然很少。为了解决这一缺点,我们开发了荧光标记的 ATP 的三、四和五磷酸类似物。与早期报道相比,新型 ATP 类似物在末端磷酸基团上仅带有一个基于吖啶酮的染料。该染料的荧光被 ATP 类似物的腺嘌呤部分猝灭,并且在磷酸链的裂解和染料与腺苷部分的解离后恢复。从而可以实时跟踪 ATP 裂解酶的活性。我们通过泛素激活酶 UBA1 和 UBA6 证明了这种活性,这代表了酶级联反应的第一步,导致泛素与底物蛋白的共价连接,该过程从酵母到人高度保守。我们发现,作为 UBA1/UBA6 辅助因子的效率非常取决于 ATP 类似物的磷酸链长度:三磷酸的利用率很低,而五磷酸的利用率最高。值得注意的是,新型含有五磷酸的 ATP 类似物取代了最近报道的双染料标记类似物的效率,因此是广泛应用的有前途的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7ae/7317923/eab0689daf90/CHEM-26-6279-g001.jpg

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