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Stable expression of Antbozoa fluorescent proteins in mammalian cells

机译:Antbozoa荧光蛋白在哺乳动物细胞中的稳定表达

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Background. Fluorescent proteins have become invaluable reporters in many areas of cellular and developmental biology. An enhanced version of the Aequorea victoria green fluorescent protein (AvEGFP) is the most widely used fluorescent protein. For a variety of reasons, it is useful to have alternative fluorescent proteins to AvEGFP. Methods: The cDNA sequences for enhanced variants of the Anemonia cyan fluorescent protein (AmCyan1), as well as the Zoanthus green (ZsGreen1) and yellow (ZsYellow1) fluorescent proteins, were cloned downstream of a constitutive cytomegalovirus (CMV) promoter within a retroviral expression vector. NIH3T3, HEK293, SW620, and WM35 cells were transduced with recombinant retroviruses at a low multiplicity of infection (MOI) to bias for single-copy integration. Both unselected and stably selected cells transduced with the retroviral expression constructs were characterized. Expression of each fluorescent protein in cells was detected using flow cytometry and fluorescence microscopy with filter sets typically used for AvEGFP/fluorescein isothiocyanate (FITC) detection and was compared with the expression of AvEGFP. In addition, a fluorescence plate reader with several excitation and emission filter sets was used for detection. Results: Expression of each protein was observable by fluorescence microscopy. Under given conditions of flow cytometry, the ZsGreen1 mean fluorescence was approximately 3-fold, 10-fold, and 50-fold greater than that of AvEGFP, ZsYellow1, and AmCyan1, respectively. AmCyan1, ZsGreen1, and AvEGFP were detected by a fluorescence plate reader. Conclusion: We determined that fluorescent proteins from Anthozoa species are detectable using a standard flow cytometer and fluorescence microscope. All of the mammalian cell lines tested expressed detectable levels of fluorescent proteins from stable integrated provirus. In cell lines where the AvEGFP protein is toxic or poorly expressed, these Anthozoa fluorescent proteins may serve as alternative fluorescent reporters. [References: 27]
机译:背景。荧光蛋白已成为细胞和发育生物学许多领域的宝贵报告者。维多利亚水母绿色荧光蛋白(AvEGFP)的增强版是使用最广泛的荧光蛋白。由于多种原因,具有替代AvEGFP的荧光蛋白是有用的。方法:在反转录病毒表达中,将组成性巨细胞病毒(CMV)启动子的下游克隆到大花银莲花青色荧光蛋白(AmCyan1)以及变质的Zoanthus绿(ZsGreen1)和黄变色(ZsYellow1)增强变体的cDNA序列。向量。 NIH3T3,HEK293,SW620和WM35细胞用重组逆转录病毒以低感染复数(MOI)进行转导,以偏向于单拷贝整合。用逆转录病毒表达构建体转导的未选择和稳定选择的细胞均被表征。使用流式细胞仪和荧光显微镜,通过通常用于AvEGFP /异硫氰酸荧光素(FITC)检测的过滤器组,检测细胞中每种荧光蛋白的表达,并将其与AvEGFP的表达进行比较。另外,使用具有多个激发和发射滤光片组的荧光板读取器进行检测。结果:通过荧光显微镜观察每种蛋白质的表达。在给定的流式细胞仪条件下,ZsGreen1的平均荧光分别比AvEGFP,ZsYellow1和AmCyan1大3倍,10倍和50倍。 AmCyan1,ZsGreen1和AvEGFP通过荧光酶标仪检测。结论:我们确定使用标准的流式细胞仪和荧光显微镜可以检测到来自Anthozoa物种的荧光蛋白。所有测试的哺乳动物细胞系均表达了可检测水平的稳定整合的原病毒荧光蛋白。在AvEGFP蛋白具有毒性或表达不佳的细胞系中,这些Anthozoa荧光蛋白可以用作替代的荧光报告基因。 [参考:27]

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