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Firefly Luciferase Mutant with Enhanced Activity and Thermostability

机译:具有增强的活性和热稳定性的萤火虫荧光素酶突变体

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The luciferase isolated from the firefly Photinus pyralis (Ppy) catalyzes a two-step reaction that results in the oxidation of d-luciferin accompanied by emission of yellow–green light with a peak at 560 nm. Among many applications, Ppy luciferase has been used extensively as a reporter gene in living cells and organisms. However, some biological applications are limited by the low stability of the luciferase and limited intracellular luciferin concentration. To address these challenges, efforts to protein engineer Ppy luciferase have resulted in a number of mutants with improved properties such as thermostability, pH tolerance, and catalytic turn over. In this work, we combined amino acid mutations that were shown to enhance the enzyme’s thermostability (Mutant E) with those reported to enhance catalytic activity (LGR). The resulting mutant (YY5) contained eight amino acid changes from the wild-type luciferase and exhibited both improved thermostability and brighter luminescence at low luciferin concentrations. Therefore, YY5 may be useful for reporter gene applications.
机译:从萤火虫萤火虫(Photinus pyralis,Ppy)中分离出的萤光素酶催化两步反应,导致d-萤光素氧化,并伴有黄绿色光的发射,峰值为560 nm。在许多应用中,Ppy荧光素酶已广泛用作活细胞和生物体中的报告基因。但是,某些生物应用受到萤光素酶稳定性低和细胞内萤光素浓度有限的限制。为了应对这些挑战,蛋白质工程学Ppy荧光素酶的努力导致了许多具有改善的特性(如热稳定性,pH耐受性和催化翻转)的突变体。在这项工作中,我们结合了显示出增强的酶热稳定性的氨基酸突变(突变E)和报道的增强催化活性(LGR)的氨基酸突变。所得突变体(YY5)含有来自野生型荧光素酶的8个氨基酸变化,并且在低荧光素浓度下显示出改善的热稳定性和更亮的发光。因此,YY5可能适用于报告基因的应用。

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