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利用新型红色密码子优化的萤火虫荧光素酶和绿色叩头虫荧光素酶进行敏感的双色体内生物发光成像。

Sensitive dual color in vivo bioluminescence imaging using a new red codon optimized firefly luciferase and a green click beetle luciferase.

机构信息

Department of Pharmaceutical Sciences, University of Bologna, Bologna, Italy.

出版信息

PLoS One. 2011 Apr 22;6(4):e19277. doi: 10.1371/journal.pone.0019277.

Abstract

BACKGROUND

Despite a plethora of bioluminescent reporter genes being cloned and used for cell assays and molecular imaging purposes, the simultaneous monitoring of multiple events in small animals is still challenging. This is partly attributable to the lack of optimization of cell reporter gene expression as well as too much spectral overlap of the color-coupled reporter genes. A new red emitting codon-optimized luciferase reporter gene mutant of Photinus pyralis, Ppy RE8, has been developed and used in combination with the green click beetle luciferase, CBG99.

PRINCIPAL FINDINGS

Human embryonic kidney cells (HEK293) were transfected with vectors that expressed red Ppy RE8 and green CBG99 luciferases. Populations of red and green emitting cells were mixed in different ratios. After addition of the shared single substrate, D-luciferin, bioluminescent (BL) signals were imaged with an ultrasensitive cooled CCD camera using a series of band pass filters (20 nm). Spectral unmixing algorithms were applied to the images where good separation of signals was observed. Furthermore, HEK293 cells that expressed the two luciferases were injected at different depth in the animals. Spectrally-separate images and quantification of the dual BL signals in a mixed population of cells was achieved when cells were either injected subcutaneously or directly into the prostate.

SIGNIFICANCE

We report here the re-engineering of different luciferase genes for in vitro and in vivo dual color imaging applications to address the technical issues of using dual luciferases for imaging. In respect to previously used dual assays, our study demonstrated enhanced sensitivity combined with spatially separate BL spectral emissions using a suitable spectral unmixing algorithm. This new D-luciferin-dependent reporter gene couplet opens up the possibility in the future for more accurate quantitative gene expression studies in vivo by simultaneously monitoring two events in real time.

摘要

背景

尽管已经克隆并应用了大量生物发光报告基因用于细胞检测和分子成像,但在小动物体内同时监测多个事件仍然具有挑战性。这部分归因于细胞报告基因表达缺乏优化以及颜色偶联报告基因的光谱重叠过多。已经开发出一种新型红色发光优化密码子萤火虫荧光素酶报告基因突变体 Photinus pyralis,Ppy RE8,并与绿色叩头甲荧光素酶 CBG99 联合使用。

主要发现

用人肾细胞(HEK293)转染表达红色 Ppy RE8 和绿色 CBG99 荧光素酶的载体。将红色和绿色发光细胞群体以不同比例混合。加入共享的单一底物 D-荧光素后,使用一系列带通滤波器(20nm)对生物发光(BL)信号进行超灵敏冷却 CCD 相机成像。对图像应用光谱解混算法,观察到信号的良好分离。此外,将表达两种荧光素酶的 HEK293 细胞以不同深度注射到动物体内。当细胞分别注射到皮下或直接注射到前列腺时,可以实现混合细胞群体中双 BL 信号的光谱分离图像和定量。

意义

我们在此报告了不同荧光素酶基因的重新设计,用于体外和体内双色成像应用,以解决使用双荧光素酶进行成像的技术问题。与以前使用的双检测方法相比,我们的研究表明,使用合适的光谱解混算法,结合增强的灵敏度和 BL 光谱发射的空间分离。这种新的 D-荧光素依赖性报告基因偶联为未来通过实时同时监测两个事件更准确地进行体内定量基因表达研究提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14db/3081340/02f37c484168/pone.0019277.g001.jpg

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