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Selective Amino Acid-Only in Vivo NMR: A Powerful Tool To Follow Stress Processes

机译:仅在体内选择性氨基酸:一个强大的工具,可以遵循压力过程

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In vivo NMR of small 13C-enriched aquatic organisms is developing as a powerful tool to detect and explain toxic stress at the biochemical level. Amino acids are a very important category of metabolites for stress detection as they are involved in the vast majority of stress response pathways. As such, they are a useful proxy for stress detection in general, which could then be a trigger for more in-depth analysis of the metabolome. 1H–13C heteronuclear single quantum coherence (HSQC) is commonly used to provide additional spectral dispersion in vivo and permit metabolite assignment. While some amino acids can be assigned from HSQC, spectral overlap makes monitoring them in vivo challenging. Here, an experiment typically used to study protein structures is adapted for the selective detection of amino acids inside living Daphnia magna (water fleas). All 20 common amino acids can be selectively detected in both extracts and in vivo. By monitoring bisphenol-A exposure, the in vivo amino acid-only approach identified larger fluxes in a greater number of amino acids when compared to published works using extracts from whole organism homogenates. This suggests that amino acid-only NMR of living organisms may be a very sensitive tool in the detection of stress in vivo and is highly complementary to more traditional metabolomics-based methods. The ability of selective NMR experiments to help researchers to “look inside” living organisms and only detect specific molecules of interest is quite profound and paves the way for the future development of additional targeted experiments for in vivo research and monitoring.
机译:体内富含13℃的水生生物的NMR正在开发作为一种能够检测和解释生化水平的毒性应激的强大工具。氨基酸是一种非常重要的代谢物,用于应力检测,因为它们参与了绝大多数应激响应途径。因此,它们是一般的应力检测的有用代理,然后可以是对代谢物更深入分析的触发。常用1H-13C异核单量子相干(HSQC)通常用于在体内提供额外的光谱分散体并允许代谢物分配。虽然可以从HSQC分配一些氨基酸,但是光谱重叠使其在体内挑战中监测它们。这里,通常用于研究蛋白质结构的实验适于选择性检测活Daphnia Magna(水蚤)内的氨基酸。所有20个常见的氨基酸都可以在提取物和体内选择性地检测。通过监测双酚-A曝光,与使用来自整个生物体匀浆的提取物的作用的作用相比,在体内氨基酸的方法中鉴定了更多氨基酸中的较大助熔剂。这表明氨基酸的生物体的NMR可以是在体内胁迫下检测应激的非常敏感的工具,并且是对更传统的基于代谢组的方法的高度互补。选择性NMR实验帮助研究人员“看看”生物体的能力,并检测特定的感兴趣分子是非常深刻的,为未来发展额外的有针对性的研究和监测的额外实验的发展方式。

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