首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Very Bright Far-Red Bioluminescence Emitting Combination Based on Engineered Railroad Worm Luciferase and 6′-Amino-Analogs for Bioimaging Purposes
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A Very Bright Far-Red Bioluminescence Emitting Combination Based on Engineered Railroad Worm Luciferase and 6′-Amino-Analogs for Bioimaging Purposes

机译:基于工程铁路蠕虫荧光素酶和6-氨基类的一种非常明亮的远红生物发光发射组合用于生物成像目的

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摘要

Beetle luciferases produce bioluminescence (BL) colors ranging from green to red, having been extensively used for many bioanalytical purposes, including bioimaging of pathogen infections and metastasis proliferation in living animal models and cell culture. For bioimaging purposes in mammalian tissues, red bioluminescence is preferred, due to the lower self-absorption of light at longer wavelengths by hemoglobin, myoglobin and melanin. Red bioluminescence is naturally produced only by Phrixothrix hirtus railroad worm luciferase (PxRE), and by some engineered beetle luciferases. However, Far-Red (FR) and Near-Infrared (NIR) bioluminescence is best suited for bioimaging in mammalian tissues due to its higher penetrability. Although some FR and NIR emitting luciferin analogs have been already developed, they usually emit much lower bioluminescence activity when compared to the original luciferin-luciferases. Using site-directed mutagenesis of PxRE luciferase in combination with 6′-modified amino-luciferin analogs, we finally selected novel FR combinations displaying BL ranging from 636–655 nm. Among them, the combination of PxRE-R215K mutant with 6′-(1-pyrrolidinyl)luciferin proved to be the best combination, displaying the highest BL activity with a catalytic efficiency ~2.5 times higher than the combination with native firefly luciferin, producing the second most FR-shifted bioluminescence (650 nm), being several orders of magnitude brighter than commercial AkaLumine with firefly luciferase. Such combination also showed higher thermostability, slower BL decay time and better penetrability across bacterial cell membranes, resulting in ~3 times higher in vivo BL activity in bacterial cells than with firefly luciferin. Overall, this is the brightest FR emitting combination ever reported, and is very promising for bioimaging purposes in mammalian tissues.
机译:甲虫荧光素酶产生从绿色到红色的生物发光(BL)颜色,广泛用于许多生物分析目的,包括生物感染和活性动物模型和细胞培养中的病原体感染和转移增殖的生物模仿。对于哺乳动物组织中的生物模仿目的,优选红色生物发光,因为血红蛋白,肌蛋白和黑色素的较长波长的光自吸收较低。红生物发光自然仅由Phroxothrix Hirtus铁路蠕虫荧光素酶(PXRE)以及一些工程甲虫荧光素酶。然而,由于其较高的渗透性,远红(FR)和近红外(NIR)生物发光最适合于在哺乳动物组织中的生物成像。虽然已经开发了一些FR和NIR发出荧光素类似物,但与原始荧光素 - 荧光素酶相比,它们通常会使生物发光活性更低。使用PXRE Luciferase的现场导向诱变与6'-改性的氨基 - 荧光素类似物组合,我们最终选择了显示BL的新型FR组合从636-655 nm。其中,用6' - (1-吡咯烷基)荧光素的PXRE-R215K突变体的组合被证明是最佳组合,显示最高的BL活性,催化效率高于与天然萤火虫荧光素的组合高2.5倍,产生的第二次FR移位的生物发光(650nm),与萤火虫荧光素酶的商业动物酶的几个级别亮。这种组合还显示出更高的热稳定性,较慢的BL衰减时间和细菌细胞膜的更好的渗透性,导致细菌细胞中的体内BL活性〜3倍,而不是用萤火虫荧光素。总的来说,这是曾经报道的最亮的FR发射组合,并且对于哺乳动物组织中的生物成像目的非常有前途。

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