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高压冷冻是用于可视化粟酒裂殖酵母细胞的强大工具:超低温和低电压扫描电子显微镜及免疫电子显微镜。

High-pressure freezing is a powerful tool for visualization of Schizosaccharomyces pombe cells: ultra-low temperature and low-voltage scanning electron microscopy and immunoelectron microscopy.

作者信息

Osumi Masako, Konomi Mami, Sugawara Tomoko, Takagi Tomoko, Baba Misuzu

机构信息

Laboratory of Electron Microscopy/Open Research Center, Japan Women's University 2-8-1 Mejirodai, Bunkyo-ku, Tokyo 112-8681, Japan.

出版信息

J Electron Microsc (Tokyo). 2006 Apr;55(2):75-88. doi: 10.1093/jmicro/dfl014. Epub 2006 Jun 16.

Abstract

Yeast cells have a thick cell wall composed of an inner network of glucans and an outer layer of mannoproteins, which is difficult to penetrate with osmium tetroxide. We previously developed the sandwich technique to overcome this problem. Although the freeze-etching method allows the fracturing of cryofixed yeast cells, it has been difficult to fracture cryofixed yeast cells for examination by cryo-scanning electron microscopy (SEM). The development of an alternative method of cryofixation, namely, high-pressure freezing, began in the 1960s and is now available for the electron microscopic analysis of yeast. We show here that when high-pressure freezing is combined with ultra-low temperature and low-voltage SEM using the new cryo-system, the Gatan Alto 2500 Cryo Transfer System, fractured and coated yeast samples could be quickly prepared. These samples yielded a fine fracture plane and revealed the ultrastructure of both external and internal cell components. We used this method to analyze the process of septum formation, one of the final and most important events of mitosis, and cell separation. The images we obtained provide a three-dimensional view of these processes for the first time. We also showed that high-pressure freezing in combination with immunoelectron microscopy made it possible to preserve the antigenicity, in situ localization, and behavior of the cell wall component alpha-1,3-glucan and its synthase during septum formation in Schizosaccharomyces pombe.

摘要

酵母细胞具有由葡聚糖内部网络和甘露糖蛋白外层组成的厚细胞壁,四氧化锇难以穿透该细胞壁。我们之前开发了夹心技术来克服这个问题。尽管冷冻蚀刻法能使冷冻固定的酵母细胞破裂,但一直难以将冷冻固定的酵母细胞破裂用于冷冻扫描电子显微镜(cryo-SEM)检查。一种替代冷冻固定方法,即高压冷冻,于20世纪60年代开始发展,现在可用于酵母的电子显微镜分析。我们在此表明,当使用新的冷冻系统——Gatan Alto 2500冷冻转移系统将高压冷冻与超低温和低电压SEM相结合时,可快速制备破裂并镀膜的酵母样品。这些样品产生了精细的断裂平面,并揭示了细胞外部和内部成分的超微结构。我们使用这种方法分析隔膜形成过程,这是有丝分裂最终且最重要的事件之一以及细胞分离过程。我们获得的图像首次提供了这些过程的三维视图。我们还表明,高压冷冻与免疫电子显微镜相结合能够在粟酒裂殖酵母隔膜形成过程中保留细胞壁成分α-1,3-葡聚糖及其合酶的抗原性、原位定位和行为。

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