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Raman microscopy of bladder cancer cells expressing green fluorescent protein

机译:表达绿色荧光蛋白的膀胱癌细胞拉曼显微镜

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摘要

Gene engineering is a commonly used tool in cellular biology to determine changes in function or expression of downstream targets. However, the impact of genetic modulation on biochemical effects is less frequently evaluated. The aim of this study is to use Raman microscopy to assess the biochemical effects of gene silencing on T24 and UMUC-13 bladder cancer cell lines. Cellular biochemical information related to nucleic acid and lipogenic components was obtained from deconvolved Raman spectra. We show that the green fluorescence protein (GFP), the chromophore that served as a fluorescent reporter for gene silencing, could also be detected by Raman microscopy. Only the gene-silenced UMUC-13 cell lines exhibited low-to-moderate GFP fluorescence as determined by fluorescence imaging and Raman spectroscopic studies. Moreover, we show that gene silencing and cell phenotype had a greater effect on nucleic acid and lipogenic components with minimal interference from GFP expression. Gene silencing was also found to perturb cellular protein secondary structure in which the amount of disorderd protein increased at the expense of more ordered protein. Overall, our study identified the spectral signature for cellular GFP expression and elucidated the effects of gene silencing on cancer cell biochemistry and protein secondary structure.
机译:基因工程是细胞生物学中常用的工具,以确定下游靶标的功能或表达的变化。然而,遗传调节对生物化学效应的影响较少。该研究的目的是使用拉曼显微镜,评估基因沉默在T24和UMUC-13膀胱癌细胞系中的生化效果。与核酸和富血液成分相关的细胞生化信息从解泛覆褐色光谱获得。我们展示了绿色荧光蛋白(GFP),作为基因沉默的荧光报道器的发色团,也可以通过拉曼显微镜检测。只有基因沉默的UMUC-13细胞系表现出低于中等的GFP荧光,如荧光显像和拉曼光谱研究所确定的。此外,我们表明基因沉默和细胞表型对核酸和脂质成分具有更大的影响,具有来自GFP表达的最小干扰。还发现基因沉默对扰动细胞蛋白二次结构的扰动细胞蛋白二次结构,其中Dinsisd蛋白的量以更有序的蛋白质的牺牲增加。总体而言,我们的研究确定了细胞GFP表达的光谱特征,并阐明了基因沉默对癌细胞生物化学和蛋白质二级结构的影响。

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