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利用软 X 射线断层扫描分析酿酒酵母中线粒体的动力学。

Soft X-ray tomography analysis of mitochondria dynamics in Saccharomyces cerevisiae.

机构信息

Institute of Biotechnology, National Tsing Hua University, Hsinchu, Taiwan.

Experimental Facility Division, National Synchrotron Radiation Research Center, Hsinchu, Taiwan.

出版信息

Biol Direct. 2024 Nov 29;19(1):126. doi: 10.1186/s13062-024-00570-2.

Abstract

BACKGROUND

Mitochondria are highly dynamic organelles that constantly undergo processes of fission and fusion. The changes in mitochondrial dynamics shape the organellar morphology and influence cellular activity regulation. Soft X-ray tomography (SXT) allows for three-dimensional imaging of cellular structures while they remain in their natural, hydrated state, which omits the need for cell fixation and sectioning. Synchrotron facilities globally primarily use flat grids as sample carriers for SXT analysis, focusing on adherent cells. To investigate mitochondrial morphology and structure in hydrated yeast cells using SXT, it is necessary to establish a method that employs the flat grid system for examining cells in suspension.

RESULTS

We developed a procedure to adhere suspended yeast cells to a flat grid for SXT analysis. Using this protocol, we obtained images of wild-type yeast cells, strains with mitochondrial dynamics defects, and mutant cells possessing distinctive mitochondria. The SXT images align well with the results from fluorescent microscopy. Optimized organellar visualization was achieved by constructing three-dimensional models of entire yeast cells.

CONCLUSIONS

In this study, we characterized the mitochondrial network in yeast cells using SXT. The optimized sample preparation procedure was effective for suspended cells like yeast, utilizing a flat grid system to analyze mitochondrial structure through SXT. The findings corresponded with the mitochondrial morphology observed under fluorescence microscopy, both in regular and disrupted dynamic equilibrium. With the acquired image of unique mitochondria in Δhap2 cells, our results revealed that intricate details of organelles, such as mitochondria and vacuoles in yeast cells, can be characterized using SXT. Therefore, this optimized system supports the expanded application of SXT for studying organellar structure and morphology in suspended cells.

摘要

背景

线粒体是高度动态的细胞器,不断经历分裂和融合的过程。线粒体动力学的变化塑造了细胞器的形态,并影响细胞活动的调节。软 X 射线断层摄影术(SXT)允许在细胞保持其自然水合状态下对细胞结构进行三维成像,无需进行细胞固定和切片。全球的同步加速器设施主要使用平板网格作为 SXT 分析的样品载体,专注于贴壁细胞。为了使用 SXT 研究水合酵母细胞中的线粒体形态和结构,有必要建立一种使用平板网格系统检查悬浮细胞的方法。

结果

我们开发了一种将悬浮酵母细胞粘附到平板网格上进行 SXT 分析的程序。使用该方案,我们获得了野生型酵母细胞、线粒体动力学缺陷菌株和具有独特线粒体的突变细胞的图像。SXT 图像与荧光显微镜的结果吻合良好。通过构建整个酵母细胞的三维模型,实现了优化的细胞器可视化。

结论

在这项研究中,我们使用 SXT 对酵母细胞中的线粒体网络进行了表征。优化的样品制备程序对于像酵母这样的悬浮细胞非常有效,利用平板网格系统通过 SXT 分析线粒体结构。发现与荧光显微镜下观察到的线粒体形态一致,无论是在正常还是动态平衡被打破的情况下。通过对Δhap2 细胞中独特线粒体的图像获取,我们的结果表明,酵母细胞中的细胞器(如线粒体和液泡)的复杂细节可以使用 SXT 来表征。因此,该优化系统支持 SXT 在悬浮细胞中研究细胞器结构和形态的广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aca5/11607810/a9395cb550b6/13062_2024_570_Fig1_HTML.jpg

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