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用放射性磷酸化标记醇类来监测生物催化的 Diels-Alder 反应。

Radioactive phosphorylation of alcohols to monitor biocatalytic Diels-Alder reactions.

机构信息

Institute of Pharmacy and Molecular Biotechnology (IPMB), Heidelberg University, Heidelberg, Germany.

出版信息

PLoS One. 2011;6(6):e21391. doi: 10.1371/journal.pone.0021391. Epub 2011 Jun 22.

Abstract

Nature has efficiently adopted phosphorylation for numerous biological key processes, spanning from cell signaling to energy storage and transmission. For the bioorganic chemist the number of possible ways to attach a single phosphate for radioactive labeling is surprisingly small. Here we describe a very simple and fast one-pot synthesis to phosphorylate an alcohol with phosphoric acid using trichloroacetonitrile as activating agent. Using this procedure, we efficiently attached the radioactive phosphorus isotope (32)P to an anthracene diene, which is a substrate for the Diels-Alderase ribozyme-an RNA sequence that catalyzes the eponymous reaction. We used the (32)P-substrate for the measurement of RNA-catalyzed reaction kinetics of several dye-labeled ribozyme variants for which precise optical activity determination (UV/vis, fluorescence) failed due to interference of the attached dyes. The reaction kinetics were analyzed by thin-layer chromatographic separation of the (32)P-labeled reaction components and densitometric analysis of the substrate and product radioactivities, thereby allowing iterative optimization of the dye positions for future single-molecule studies. The phosphorylation strategy with trichloroacetonitrile may be applicable for labeling numerous other compounds that contain alcoholic hydroxyl groups.

摘要

自然界已经有效地采用了磷酸化作用来进行许多生物关键过程,从细胞信号传递到能量储存和传递。对于生物有机化学家来说,将单个磷酸基团附着到放射性标记物上的可能方法数量惊人地少。在这里,我们描述了一种非常简单和快速的一锅合成方法,使用三氯乙腈作为激活剂,用磷酸将醇磷酸化。使用此程序,我们有效地将放射性磷同位素(32)P 附着到蒽二烯上,蒽二烯是 Diels-Alderase 核酶的底物-一种催化该名反应的 RNA 序列。我们使用(32)P-底物来测量几种染料标记的核酶变体的 RNA 催化反应动力学,由于附着的染料的干扰,精确的旋光活性测定(UV/vis、荧光)失败。通过薄层层析分离(32)P 标记的反应成分,并对底物和产物放射性进行密度计分析,从而对未来的单分子研究进行染料位置的迭代优化,对反应动力学进行了分析。使用三氯乙腈的磷酸化策略可能适用于标记许多其他含有醇羟基的化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c4e/3120863/9811fe655702/pone.0021391.g004.jpg

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