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Changes in Biomolecular Profile in a Single Nucleolus during Cell Fixation

机译:细胞固定过程中单个核中生物分子谱的变化

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Fixation of biological sample is an essential technique applied in order to "freeze" in time the intracellular molecular content. However, fixation induces changes of the cellular molecular structure, which mask physiological distribution of biomolecules and bias interpretation of results. Accurate, sensitive, and comprehensive characterization of changes in biomolecular composition, occurring during fixation, is crucial for proper analysis of experimental data. Here we apply biomolecular component analysis for Raman spectra measured in the same nucleoli of HeLa cells before and after fixation by either formaldehyde solution or by chilled ethanol. It is found that fixation in formaldehyde does not strongly affect the Raman spectra of nucleolar biomolecular components, but may significantly decrease the nucleolar RNA concentration. At the same time, ethanol fixation leads to a proportional increase (up to 40%) in concentrations of nucleolar proteins and RNA, most likely due to cell shrinkage occurring in the presence of coagulant fixative. Ethanol fixation also triggers changes in composition of nucleolar proteome, as indicated by an overall reduction of the α-helical structure of proteins and increase in the concentration of proteins containing the β-sheet conformation. We conclude that cross-linking fixation is a more appropriate protocol for mapping of proteins in situ. At the same time, ethanol fixation is preferential for studies of RNA-containing macromolecules. We supplemented our quantitative Raman spectroscopic measurements with mapping of the protein and lipid macromolecular groups in live and fixed cells using coherent anti-Stokes Raman scattering nonlinear optical imaging.
机译:固定生物样品是为了及时“冻结”细胞内分子含量而应用的一项必不可少的技术。然而,固定诱导细胞分子结构的变化,这掩盖了生物分子的生理分布并偏向于结果的解释。固定过程中发生的生物分子组成变化的准确,灵敏和全面的表征对于正确分析实验数据至关重要。在这里,我们对甲醛溶液或冷冻乙醇固定之前和之后在HeLa细胞的同一核仁中测得的拉曼光谱进行生物分子成分分析。发现甲醛中的固定不会强烈影响核仁生物分子成分的拉曼光谱,但是可以显着降低核仁RNA浓度。同时,乙醇固定会导致核仁蛋白和RNA的浓度成比例地增加(最多40%),这很可能是由于在凝固性固定剂的存在下发生的细胞收缩。乙醇固定还会触发核仁蛋白质组的组成发生变化,如蛋白质的α-螺旋结构总体减少以及含有β-sheet构象的蛋白质浓度增加所表明的。我们得出的结论是,交联固定是一种更适合原位定位蛋白质的方案。同时,乙醇固定是研究含RNA的大分子的优先选择。我们使用相干抗斯托克斯拉曼散射非线性光学成像技术对活细胞和固定细胞中的蛋白质和脂质大分子基团进行定位,从而补充了定量拉曼光谱测量方法。

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