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红色荧光素酶 PpyRE9 与常规 Luc2 比较,作为活体成像干细胞的生物发光报告基因。

Comparison of red-shifted firefly luciferase Ppy RE9 and conventional Luc2 as bioluminescence imaging reporter genes for in vivo imaging of stem cells.

机构信息

Johns Hopkins University School of Medicine, Division of MR Research, Russell H. Morgan Department of Radiology and Radiological Science, and Cellular Imaging Section and Vascular Biology Program, Institute for Cell Engineering, Baltimore, Maryland 21205, USA.

出版信息

J Biomed Opt. 2012 Jan;17(1):016004. doi: 10.1117/1.JBO.17.1.016004.

Abstract

One critical issue for noninvasive imaging of transplanted bioluminescent cells is the large amount of light absorption in tissue when emission wavelengths below 600 nm are used. Luciferase with a red-shifted spectrum can potentially bypass this limitation. We assessed and compared a mutant of firefly luciferase (Ppy RE9, PRE9) against the yellow luciferase luc2 gene for use in cell transplantation studies. C17.2 neural stem cells expressing PRE9-Venus and luc2-Venus were sorted by flow cytometry and assessed for bioluminescence in vitro in culture and in vivo after transplantation into the brain of immunodeficient Rag2-/- mice. We found that the luminescence from PRE9 was stable, with a peak emission at 620 nm, shifted to the red compared to that of luc2. The emission peak for PRE9 was pH-independent, in contrast to luc2, and much less affected by tissue absorbance compared to that of luc2. However, the total emitted light radiance from PRE9 was substantially lower than that of luc2, both in vitro and in vivo. We conclude that PRE9 has favorable properties as compared to luc2 in terms of pH independence, red-shifted spectrum, tissue light penetration, and signal quantification, justifying further optimization of protein expression and enzymatic activity.

摘要

对于移植生物发光细胞的无创成像而言,一个关键问题是当使用低于 600nm 的发射波长时,组织会大量吸收光线。具有红移光谱的荧光素酶有可能克服这一限制。我们评估并比较了一种萤火虫荧光素酶突变体(PpyRE9,PRE9)与黄色荧光素酶 luc2 基因在细胞移植研究中的应用。通过流式细胞术对表达 PRE9-Venus 和 luc2-Venus 的 C17.2 神经干细胞进行分选,并在体外培养和移植到免疫缺陷 Rag2-/- 小鼠大脑后进行体内评估生物发光。我们发现 PRE9 的发光稳定,发射峰在 620nm,与 luc2 相比红移。与 luc2 相比,PRE9 的发射峰对 pH 不敏感,并且受组织吸收率的影响比 luc2 小得多。然而,与 luc2 相比,无论是在体外还是体内,PRE9 的总发射光辐射都明显较低。我们得出结论,与 luc2 相比,PRE9 在 pH 独立性、红移光谱、组织光穿透和信号定量方面具有更好的特性,这证明了进一步优化蛋白质表达和酶活性是合理的。

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