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In Vivo NMR Metabolic Profiling of Fabrea salina Reveals Sequential Defense Mechanisms against Ultraviolet Radiation

机译:法布里亚盐沼的体内NMR代谢谱分析揭示了针对紫外线辐射的顺序防御机制。

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摘要

Fabrea salina is a hypersaline ciliate that is known to be among the strongest ultraviolet (UV)-resistant microorganisms; however, the molecular mechanisms of this resistance are almost unknown. By means of in vivo NMR spectroscopy, we determined the metabolic profile of living F. salina cells exposed to visible light and to polychromatic UV-B + UV-A + Vis radiation for several different exposure times. We used unsupervised pattern-recognition analysis to compare these profiles and discovered some metabolites whose concentration changed specifically upon UV exposure and in a dose-dependent manner. This variation was interpreted in terms of a two-phase cell reaction involving at least two different pathways: an early response consisting of degradation processes, followed by a late response activating osmoprotection mechanisms. The first step alters the concentration of formate, acetate, and saturated fatty-acid metabolites, whereas the osmoprotection modifies the activity of betaine moieties and other functionally related metabolites. In the latter pathway, alanine, proline, and sugars suggest a possible incipient protein synthesis as defense and/or degeneration mechanisms. We conclude that NMR spectroscopy on in vivo cells is an optimal approach for investigating the effect of UV-induced stress on the whole metabolome of F. salina because it minimizes the invasiveness of the measurement.
机译:Fabrea salina是一种高盐纤毛虫,已知是最强的抗紫外线(UV)微生物。然而,这种抗性的分子机制几乎是未知的。通过体内NMR光谱法,我们确定了暴露于可见光和多色UV-B + UV-A + Vis辐射几个不同暴露时间的活盐藻细胞的代谢谱。我们使用无监督模式识别分析来比较这些谱图,并发现了一些代谢产物,它们的浓度在紫外线照射下以剂量依赖的方式发生了特定的变化。这种变化是根据涉及至少两个不同途径的两阶段细胞反应来解释的:由降解过程组成的早期反应,然后是激活渗透保护机制的晚期反应。第一步改变甲酸盐,乙酸盐和饱和脂肪酸代谢物的浓度,而渗透保护作用则改变了甜菜碱部分和其他功能相关代谢物的活性。在后一种途径中,丙氨酸,脯氨酸和糖提示可能的初始蛋白质合成是防御和/或变性机制。我们得出结论,在体内细胞上进行NMR光谱分析是研究紫外线诱导的应激对盐沼整个代谢组的影响的最佳方法,因为它可以最小化测量的侵袭性。

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