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用于改善生物发光成像的叩甲荧光素酶突变体和近红外萘基荧光素

Click beetle luciferase mutant and near infrared naphthyl-luciferins for improved bioluminescence imaging.

作者信息

Hall Mary P, Woodroofe Carolyn C, Wood Monika G, Que Ivo, Van't Root Moniek, Ridwan Yanto, Shi Ce, Kirkland Thomas A, Encell Lance P, Wood Keith V, Löwik Clemens, Mezzanotte Laura

机构信息

Promega Corporation, Madison, WI, 53711, USA.

Imaging Probe Development Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Rockville, MD, 20850, USA.

出版信息

Nat Commun. 2018 Jan 9;9(1):132. doi: 10.1038/s41467-017-02542-9.

Abstract

The sensitivity of bioluminescence imaging in animals is primarily dependent on the amount of photons emitted by the luciferase enzyme at wavelengths greater than 620 nm where tissue penetration is high. This area of work has been dominated by firefly luciferase and its substrate, D-luciferin, due to the system's peak emission (~ 600 nm), high signal to noise ratio, and generally favorable biodistribution of D-luciferin in mice. Here we report on the development of a codon optimized mutant of click beetle red luciferase that produces substantially more light output than firefly luciferase when the two enzymes are compared in transplanted cells within the skin of black fur mice or in deep brain. The mutant enzyme utilizes two new naphthyl-luciferin substrates to produce near infrared emission (730 nm and 743 nm). The stable luminescence signal and near infrared emission enable unprecedented sensitivity and accuracy for performing deep tissue multispectral tomography in mice.

摘要

动物体内生物发光成像的灵敏度主要取决于荧光素酶在波长大于620nm处发射的光子数量,该波长下组织穿透性高。由于该系统的峰值发射(约600nm)、高信噪比以及D - 荧光素在小鼠体内总体良好的生物分布,萤火虫荧光素酶及其底物D - 荧光素在这一研究领域占据主导地位。在此,我们报告了一种密码子优化的叩头虫红色荧光素酶突变体的研发情况。当在黑色皮毛小鼠皮肤内的移植细胞或深部脑组织中比较这两种酶时,该突变体产生的光输出比萤火虫荧光素酶多得多。该突变酶利用两种新的萘基荧光素底物产生近红外发射(730nm和743nm)。稳定的发光信号和近红外发射为在小鼠体内进行深部组织多光谱断层扫描提供了前所未有的灵敏度和准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a21f/5760652/fe5a3b3e9427/41467_2017_2542_Fig1_HTML.jpg

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