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用于溶解动态核极化中谷氨酰胺使用的工具箱:从酶反应监测到细胞代谢途径和成像研究。

A Toolbox for Glutamine Use in Dissolution Dynamic Nuclear Polarization: from Enzymatic Reaction Monitoring to the Study of Cellular Metabolic Pathways and Imaging.

机构信息

Laboratoire de Chimie et Biochimie Pharmacologiques et Toxicologiques, Université Paris Cité, 45, Rue des Saints Pères, 75006, Paris, France.

Laboratoire NF-κB, Différenciation et Cancer, Université Paris Cité, 24, Rue du faubourg Saint Jacques, 75014, Paris, France.

出版信息

Chemphyschem. 2023 Jun 15;24(12):e202300151. doi: 10.1002/cphc.202300151. Epub 2023 Apr 20.

Abstract

Glutamine is under scrutiny regarding its metabolic deregulation linked to energetic reprogramming in cancer cells. Many analytical techniques have been used to better understand the impact of the metabolism of amino acids on biological processes, however only a few are suited to work with complex samples. Here, we report the use of a general dissolution dynamic nuclear polarization (D-DNP) formulation using an unexpensive radical as a multipurpose tool to study glutamine, with insights from enzymatic modelling to complex metabolic networks and fast imaging. First, hyperpolarized [5- C] glutamine is used as molecular probe to study the kinetic action of two enzymes: L-asparaginase that has been used as an anti-metabolic treatment for cancer, and glutaminase. These results are also compared with those acquired with another hyperpolarized amino acid, [1,4- C] asparagine. Second, we explored the use of hyperpolarized (HP) substrates to probe metabolic pathways by monitoring metabolic profiles arising from hyperpolarized glutamine in E. coli extracts. Finally, a highly concentrated sample formulation is proposed for the purpose of fast imaging applications. We think that this approach can be extended to formulate other amino acids as well as other metabolites and provide complementary insights into the analysis of metabolic networks.

摘要

谷氨酰胺的代谢失调与其在癌细胞中的能量重编程有关,这一现象受到了广泛关注。许多分析技术被用于更好地理解氨基酸代谢对生物过程的影响,但只有少数技术适用于复杂样本。在这里,我们报告了使用一种通用的溶解动态核极化(D-DNP)配方,使用一种廉价的自由基作为多用途工具来研究谷氨酰胺,从酶模型到复杂的代谢网络和快速成像获得了深入的见解。首先,将高极化[5- C]谷氨酰胺用作分子探针来研究两种酶的动力学作用:天冬酰胺酶已被用作癌症的代谢治疗药物,以及谷氨酰胺酶。这些结果还与另一种高极化氨基酸[1,4- C]天冬酰胺的结果进行了比较。其次,我们通过监测来自于 E. coli 提取物中的高极化谷氨酰胺的代谢谱,探索了使用高极化(HP)底物来探测代谢途径的方法。最后,提出了一种高浓度样品配方,用于快速成像应用。我们认为,这种方法可以扩展到其他氨基酸和其他代谢物的配方,并为代谢网络的分析提供补充见解。

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