Harmel Robert K, Puschmann Robert, Nguyen Trung Minh, Saiardi Adolfo, Schmieder Peter, Fiedler Dorothea
Leibniz-Forschungsinstitut für Molekulare Pharmakologie , Robert-Rössle-Straße 10 , 13125 Berlin , Germany . Email:
Institute of Chemistry , Humboldt-Universität zu Berlin , Brook-Taylor-Straße 2 , 12489 Berlin , Germany.
Chem Sci. 2019 Apr 23;10(20):5267-5274. doi: 10.1039/c9sc00151d. eCollection 2019 May 28.
Inositol poly- and pyrophosphates (InsPs and PP-InsPs) are an important group of metabolites and mediate a wide range of processes in eukaryotic cells. To elucidate the functions of these molecules, robust techniques for the characterization of inositol phosphate metabolism are required, both at the biochemical and the cellular level. Here, a new tool-set is reported, which employs uniformly C-labeled compounds ([C]-inositol, [C]InsP, [C]InsP, and [C]5PP-InsP), in combination with commonly accessible NMR technology. This approach permitted the detection and quantification of InsPs and PP-InsPs within complex mixtures and at physiological concentrations. Specifically, the enzymatic activity of IP6K1 could be monitored in real time. Metabolic labeling of mammalian cells with [C]-inositol enabled the analysis of cellular pools of InsPs and PP-InsPs, and uncovered high concentrations of 5PP-InsP in HCT116 cells, especially in response to genetic and pharmacological perturbation. The reported method greatly facilitates the analysis of this otherwise spectroscopically silent group of molecules, and holds great promise to comprehensively analyze inositol-based signaling molecules under normal and pathological conditions.
肌醇多磷酸和焦磷酸(InsPs和PP-InsPs)是一类重要的代谢产物,介导真核细胞中的多种过程。为了阐明这些分子的功能,在生化和细胞水平上都需要强大的技术来表征肌醇磷酸代谢。在此,报道了一种新的工具集,它采用均匀碳标记的化合物([¹³C] - 肌醇、[¹³C]InsP、[¹³C]InsP和[¹³C]5PP-InsP),结合常用的核磁共振技术。这种方法能够在复杂混合物中以及生理浓度下检测和定量InsPs和PP-InsPs。具体而言,能够实时监测IP6K1的酶活性。用[¹³C] - 肌醇对哺乳动物细胞进行代谢标记,能够分析细胞内InsPs和PP-InsPs的库,并发现HCT116细胞中5PP-InsP的浓度很高,尤其是在基因和药物扰动的情况下。所报道的方法极大地促进了对这一类原本在光谱学上难以检测的分子的分析,并有望在正常和病理条件下全面分析基于肌醇的信号分子。