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首页> 外文期刊>Analytical chemistry >On-Target Labeling of Intracellular Metabolites Combined with Chemical Mapping of Individual Hyphae Revealing Cytoplasmic Relocation of Isotopologues
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On-Target Labeling of Intracellular Metabolites Combined with Chemical Mapping of Individual Hyphae Revealing Cytoplasmic Relocation of Isotopologues

机译:结合细胞内代谢物的目标标记,结合揭示单个菌丝胞质重定位的单个菌丝的化学图谱

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摘要

A microscale analytical platform integrating microbial cell culture, isotopic labeling, along with visual and mass spectrometric imaging with single-cell resolution has been developed and applied in the monitoring of cellular metabolism in fungal mycelium. The method implements open chips with a two-dimensional surface pattern composed of hydrophobic and hydrophilic zones. Two hydrophilic islands are used as medium reservoirs, while the hydrophobic area constitutes the support for the growing aerial hyphae, which do not have direct contact with the medium. The first island, containing ~(12)C_(6)-glucose medium, was initially inoculated with the mycelium (Neurospora crassa), and following the initial incubation period, the hyphae progressed toward the second medium island, containing an isotopically labeled substrate (~(13)C_(6)-glucose). The ~(13)C atoms were gradually incorporated into cellular metabolites, which was revealed by MALDI-MS. The fate of the chitin-biosynthesis precursor, uridine diphosphate N-acetylglucosamine (UDP-GlcNAc), was monitored by recording mass spectra with characteristic isotopic patterns, which indicated the presence of various ~(12)C/~(13)C isotopologues. The method enabled mapping the ~(13)C-labeled UDP-GlcNAc in fungal mycelium and recording its redistribution in hyphae, directly on the chip.
机译:集成了微生物细胞培养,同位素标记以及具有单细胞分辨率的可见光和质谱成像的微型分析平台已开发并应用于监测真菌菌丝体中的细胞代谢。该方法实现具有由疏水区和亲水区组成的二维表面图案的开放芯片。两个亲水岛被用作培养基储库,而疏水区域则构成了生长中的气生菌丝的支撑,它们不与培养基直接接触。首先用菌丝体(Neurospora crassa)接种含有〜(12)C_(6)-葡萄糖培养基的第一个岛,然后在初始潜伏期后,菌丝向第二个含有同位素标记底物( 〜(13)C_(6)-葡萄糖)。 MALDI-MS揭示了〜(13)C原子逐渐掺入细胞代谢物中。通过记录具有特征性同位素模式的质谱图监测了几丁质生物合成前体尿苷二磷酸N-乙酰氨基葡萄糖(UDP-GlcNAc)的命运,表明存在各种〜(12)C /〜(13)C同位素异构体。该方法可以在真菌菌丝体中映射〜(13)C标记的UDP-GlcNAc,并直接在芯片上记录其在菌丝中的重新分布。

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