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Microscopy ambient ionization top-down mass spectrometry reveals developmental patterning

机译:显微镜环境电离自上而下的质谱揭示了发展模式

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摘要

There is immense cellular and molecular heterogeneity in biological systems. Here, we demonstrate the utility of integrating an inverted light microscope with an ambient ionization source, nanospray electrospray desorption ionization, attached to a high-resolution mass spectrometer to characterize the molecular composition of mouse spinal cords. We detected a broad range of molecules, including peptides and proteins, as well as metabolites such as lipids, sugars, and other small molecules, including S-adenosyl methionine and glutathione, through top-down MS. Top-down analysis revealed variation in the expression of Hb, including the transition from fetal to adult Hb and heterogeneity in Hb subunits consistent with the genetic diversity of the mouse models. Similarly, temporal changes to actin-sequestering proteins β-thymosins during development were observed. These results demonstrate that interfacing microscopy with ambient ionization provides the means to perform targeted in situ ambient top-down mass spectral analysis to study the pattern of proteins, lipids, and sugars in biologically heterogeneous samples.
机译:生物系统中存在巨大的细胞和分子异质性。在这里,我们展示了将倒置光显微镜与环境电离源(纳米喷雾电喷雾解吸电离)集成到高分辨率质谱仪上以表征小鼠脊髓分子组成的实用性。通过自上而下的MS,我们检测了范围广泛的分子,包括肽和蛋白质,以及代谢产物,如脂质,糖和其他小分子,包括S-腺苷甲硫氨酸和谷胱甘肽。自上而下的分析揭示了Hb表达的变化,包括从胎儿Hb到成年Hb的转变以及Hb亚基的异质性,与小鼠模型的遗传多样性一致。同样,在发育过程中观察到肌动蛋白分离蛋白β-胸腺素的时间变化。这些结果表明,与环境电离的界面显微镜为进行有针对性的原位环境自上而下的质谱分析提供了一种手段,以研究生物异质样品中蛋白质,脂质和糖的模式。

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