Recent advances in in-resin correlative light and electron microscopy of Epon-embedded cells.

Isei Tanida, Junji Yamaguchi, Chigure Suzuki, Soichiro Kakuta, Yasuo Uchiyama
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引用次数: 1

Abstract

Correlative fluorescent and electron microscopic images of the same section of epoxy (or other polymer)-embedded samples, hereafter referred to as 'in-resin CLEM', have been developed to improve the positional accuracy and Z-axis resolution limitations of conventional correlative light and electron microscopy (CLEM). High-pressure freezing and quick-freezing substitution result in in-resin CLEM of acrylic-based resin-embedded cells expressing green fluorescent protein, yellow fluorescent protein, mVenus and mCherry, which are sensitive to osmium tetroxide. The identification of osmium-resistant fluorescent proteins leads to the development of in-resin CLEM of Epon-embedded cells. Using subtraction-based fluorescence microscopy with a photoconvertible fluorescent protein, mEosEM-E, its green fluorescence can be observed in thin sections of Epon-embedded cells, and two-color in-resin CLEM using mEosEM-E and mScarlet-H can be performed. Green fluorescent proteins, CoGFP variant 0 and mWasabi, and far-red fluorescent proteins, mCherry2 and mKate2, are available for in-resin CLEM of Epon-embedded cells using the standard procedure for Epon-embedding with additional incubation. Proximity labeling is applied to in-resin CLEM to overcome the limitations of fluorescent proteins in epoxy resin. These approaches will contribute significantly to the future of CLEM analysis.

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Epon包埋细胞的树脂相关光学和电子显微镜研究进展。
已开发出环氧树脂(或其他聚合物)嵌入样品的同一截面的相关荧光和电子显微镜图像,以下简称“树脂内CLEM”,以提高传统相关光学和电子显微镜(CLEM)的位置精度和Z轴分辨率限制。高压冷冻和快速冷冻替代导致丙烯酸树脂包埋细胞的树脂CLEM表达对四氧化锇敏感的绿色荧光蛋白、黄色荧光蛋白、mVenus和mCherry。锇抗性荧光蛋白的鉴定导致Epon包埋细胞的树脂内CLEM的发展。使用具有光转换荧光蛋白mEosEM-E的基于减法的荧光显微镜,可以在Epon包埋细胞的薄片中观察到其绿色荧光,并且可以使用mEosEM-E和mScarlet-H在树脂中进行双色CLEM。绿色荧光蛋白CoGFP变体0和mWasabi,以及远红色荧光蛋白mCherry2和mKate2可用于Epon包埋细胞的树脂内CLEM,使用Epon包包埋的标准程序和额外的孵育。将邻近标记应用于树脂内CLEM,以克服环氧树脂中荧光蛋白的局限性。这些方法将对CLEM分析的未来做出重大贡献。
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