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Expression of reef coral fluorescent proteins in the central nervous system of transgenic mice.

机译:礁珊瑚荧光蛋白在转基因小鼠的中枢神经系统中的表达。

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摘要

Reef coral fluorescent proteins (RCFPs) are bright fluorescent proteins (FPs) covering a wide spectral range. We used various RCFP genes to transgenically color different cell populations in the brain. The mouse Thy1.2 promoter was used to target expression of HcRed1 in neurons, the human glial fibrillary acidic protein (GFAP) promoter to label astrocytes with AmCyan1, AsRed2 and mRFP1 as well as the mouse proteolipid protein promoter to mark oligodendrocytes with DsRed1. In brain sections of transgenic mice, RCFP expression was found to be highly specific using immunohistochemistry and fluorescence microscopy. In contrast to transgenic mice with expression of jellyfish FP variants, RCFPs formed numerous fluorescent precipitates. These aggregates were primarily found in cell somata and also in cell processes. Older mice were more affected than younger ones. Despite these fluorescent deposits, physiological properties of RCFP expressing brain cells such as whole-cell membrane currents or glutamate-evoked calcium signaling seemed to be unaffected. While brightness and spectral variation of RCFPs are optimal for expression in transgenic animals used in physiological experiments, the formation of fluorescent precipitates in various cell types limits their use for morphological cell analysis in situ.
机译:珊瑚礁荧光蛋白(RCFP)是覆盖广泛光谱范围的明亮荧光蛋白(FP)。我们使用了各种RCFP基因对大脑中的不同细胞群体进行转基因着色。小鼠Thy1.2启动子用于靶向HcRed1在神经元中的表达,人类神经胶质纤维酸性蛋白(GFAP)启动子用AmCyan1,AsRed2和mRFP1标记星形胶质细胞,小鼠蛋白脂蛋白启动子用DsRed1标记少突胶质细胞。在转基因小鼠的大脑切片中,使用免疫组织化学和荧光显微镜观察发现RCFP表达具有高度特异性。与表达水母FP变体的转基因小鼠相反,RCFP形成了许多荧光沉淀。这些聚集体主要存在于细胞体细胞和细胞过程中。年长的小鼠比年幼的小鼠受影响更大。尽管有这些荧光沉积物,但表达RCFP的脑细胞的生理特性(如全细胞膜电流或谷氨酸诱发的钙信号传导)似乎并未受到影响。尽管RCFP的亮度和光谱变化最适合在生理实验中使用的转基因动物中表达,但各种细胞类型中荧光沉淀物的形成限制了它们在原位形态细胞分析中的用途。

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