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A novel protocol to detect green fluorescent protein in unfixed, snap-frozen tissue

机译:一种在未固定的卡扣组织中检测绿色荧光蛋白的新方案

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The green fluorescent protein (GFP) is a powerful reporter protein that allows labeling of specific proteins or entire cells. However, as GFP is a small soluble protein, it easily crosses membranes if cell integrity is disrupted, and GFP signal is lost or diffuse if the specimen is not fixed beforehand. While pre-fixation is often feasible for histological analyses, many molecular biology procedures and new imaging techniques, such as imaging mass spectrometry, require unfixed specimens. To be able to use GFP labeling in tissues prepared for such applications, we have tested various protocols to minimize the loss of GFP signal. Here we show that, in cryocut sections of snap-frozen brain tissue from two GFP reporter mouse lines, leaking of the GFP signal is prevented by omitting the commonly performed drying of the cryosections, and by direct post-fixation with 4% paraformaldehyde pre-warmed at 30–37?°C. Although the GFP staining does not reach the same quality as obtained with pre-fixed tissue, GFP localization within the cells that express it is preserved with this method. This protocol can thus be used to identify GFP positive cells on sections originating from unfixed, cryosectioned tissue.
机译:绿色荧光蛋白(GFP)是一种强大的报告蛋白,允许标记特定蛋白质或整个细胞。然而,由于GFP是一种小可溶性蛋白质,如果细胞完整性破坏,它容易穿过膜,并且如果试样未预先固定,则GFP信号丢失或扩散。虽然预固定通常可用于组织学分析,但许多分子生物学程序和新的成像技术,例如成像质谱,需要未固定的标本。为了能够在为这些应用的组织中使用GFP标记,我们已经测试了各种协议以最小化GFP信号的损失。在这里,我们表明,在来自两个GFP报告器小鼠线的卡扣冻胀脑组织的冷冻机构部分中,通过省略常见的冷冻干燥的干燥,并通过直接固定与4%多聚甲醛的直接固定来防止GFP信号的泄漏。温暖在30-37?°C。尽管GFP染色与用预固定组织获得的质量没有相同的质量,但用这种方法将其保留的细胞内的GFP定位。因此,该方案可用于鉴定源自未固定的冷冻组织的部分的GFP阳性细胞。

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