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探索古细菌细胞生物学:探究染料在细胞成像中的应用。

Probing archaeal cell biology: exploring the use of dyes in the imaging of cells.

作者信息

Cezanne Alice, Hoogenberg Baukje, Baum Buzz

机构信息

Cell Biology Division, MRC Laboratory of Molecular Biology, Cambridge, United Kingdom.

Faculty of Science, Utrecht University, Utrecht, Netherlands.

出版信息

Front Microbiol. 2023 Sep 5;14:1233032. doi: 10.3389/fmicb.2023.1233032. eCollection 2023.

Abstract

Archaea are key players in many critical ecological processes. In comparison to eukaryotes and bacteria, however, our understanding of both the cell biology and diversity of archaea remains limited. While archaea inhabit a wide range of environmental conditions, many species are extremophiles, surviving in extreme temperature, salt or pH conditions, making their cell biology hard to study. Recently, our understanding of archaeal cell biology has been advanced significantly by the advent of live cell imaging as well as the development of genetic tools to exogenously express fluorescent proteins in some mesophilic archaeal model systems, e.g., . However, for most archaeal species, especially thermophilic species or emerging model systems without well characterized genetic tools, live cell imaging remains dependent on fluorescent chemical probes to label and track the dynamics of living cells. While a wide range of fluorescent stains and markers that label different components of the cell are available commercially, their use has usually been optimized for use in a small number of eukaryotic cell systems. Here we report the successes and failures of the application of membrane, DNA, S-layer and cytoplasm markers in live cell imaging of archaea, as well as the optimization of fixation and immunolabelling approaches. We have applied these markers to the thermoacidophilic archaeon but expect some to work in other archaeal species. Furthermore, those procedures that failed in may still prove useful for imaging archaea that grow at a more neutral pH and/or at a less extreme temperature.

摘要

古菌是许多关键生态过程中的关键参与者。然而,与真核生物和细菌相比,我们对古菌的细胞生物学和多样性的了解仍然有限。虽然古菌栖息于广泛的环境条件中,但许多物种是嗜极生物,能在极端温度、盐度或pH条件下生存,这使得它们的细胞生物学难以研究。最近,活细胞成像技术的出现以及在一些嗜温古菌模型系统(例如……)中外源表达荧光蛋白的遗传工具的开发,极大地推动了我们对古菌细胞生物学的理解。然而,对于大多数古菌物种,尤其是嗜热物种或没有成熟遗传工具的新兴模型系统,活细胞成像仍然依赖荧光化学探针来标记和追踪活细胞的动态。虽然市面上有多种标记细胞不同成分的荧光染料和标记物,但它们的使用通常是针对少数真核细胞系统进行优化的。在这里,我们报告了膜、DNA、S层和细胞质标记物在古菌活细胞成像中的应用成败,以及固定和免疫标记方法的优化。我们已将这些标记物应用于嗜热嗜酸古菌,但预计其中一些也适用于其他古菌物种。此外,那些在……中失败的程序可能仍对在更中性pH值和/或较低极端温度下生长的古菌成像有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a363/10508906/68a22640669b/fmicb-14-1233032-g001.jpg

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