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多变量分析辅助拉曼微光谱法直接可视化单个酵母细胞中结构相似的多糖。

Direct Visualization of Structurally Similar Polysaccharides in Single Yeast Cells by Multivariate Analysis Assisted Raman Microspectroscopy.

机构信息

The United Graduate School of Agricultural Sciences, Tottori University, Tottori 6808550, Japan.

Department of Biophysics, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, Karnataka 576104, India.

出版信息

J Phys Chem B. 2023 Jun 15;127(23):5249-5256. doi: 10.1021/acs.jpcb.3c00632. Epub 2023 Jun 6.

Abstract

The demand for functional food ingredients like β-glucan has risen enormously in recent times owing to its use in many fields including the food and beverage, cosmetics, pharmaceuticals, and biotechnology industries. Among the many natural sources of glucans such as oats, barley, mushrooms, and seaweeds, yeast has a special advantage in the industrial production of glucans. However, characterizing glucans is not straightforward as there are many different structural variations such as α- or β-glucans with various configurations which vary in their physical and chemical properties. Currently, microscopy, chemical or genetic approaches are followed to study glucan synthesis and accumulation in single yeast cells. However, they are time-consuming, lack molecular specificity, or are practically not feasible for real applications. Therefore, we developed a Raman microspectroscopy based method to identify, distinguish, and visualize structurally similar glucan polysaccharides. By employing multivariate curve resolution analysis, we successfully separated Raman spectra of α- and β-glucans from mixtures with high specificity and visualized heterogeneous molecular distributions during the sporulation of yeasts at the single-cell level in a label-free manner. We believe such an approach when combined with a flow cell can achieve the sorting of yeast cells based on the accumulation of glucans for various applications. Further, such an approach can also be extended to various other biological systems to investigate structurally similar carbohydrate polymers in a fast and reliable manner.

摘要

由于其在食品饮料、化妆品、制药和生物技术等多个领域的应用,β-葡聚糖等功能性食品成分的需求在最近大幅增长。在燕麦、大麦、蘑菇和海藻等许多天然来源的葡聚糖中,酵母在葡聚糖的工业生产中具有特殊优势。然而,葡聚糖的特性并不简单,因为存在许多不同的结构变化,例如具有不同构型的α-或β-葡聚糖,其物理和化学性质也有所不同。目前,显微镜、化学或遗传方法被用于研究单个酵母细胞中葡聚糖的合成和积累。然而,这些方法耗时、缺乏分子特异性,或者在实际应用中实际上不可行。因此,我们开发了一种基于拉曼微光谱的方法,用于识别、区分和可视化结构相似的葡聚糖多糖。通过使用多变量曲线分辨分析,我们成功地从混合物中分离出α-和β-葡聚糖的拉曼光谱,具有高特异性,并以无标记的方式可视化酵母孢子形成过程中多糖在单个细胞水平上的异质分子分布。我们相信,当这种方法与流动池结合使用时,可以根据葡聚糖的积累对酵母细胞进行分类,从而实现各种应用。此外,这种方法还可以扩展到各种其他生物系统,以快速可靠的方式研究结构相似的碳水化合物聚合物。

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