首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >The origin of luciferase activity in Zophobas mealworm AMP/CoA-ligase (protoluciferase): luciferin stereoselectivity as a switch for the oxygenase activity
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The origin of luciferase activity in Zophobas mealworm AMP/CoA-ligase (protoluciferase): luciferin stereoselectivity as a switch for the oxygenase activity

机译:Zophobas粉虫AMP / CoA-连接酶(原荧光素酶)中荧光素酶活性的起源:荧光素立体选择性作为氧化酶活性的开关

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摘要

Beetle luciferases evolved from AMP/CoA-ligases. However, it is unclear how the new luciferase activity evolved. In order to clarify this question, we compared the luminescence and catalytic properties of a recently cloned luciferase-like enzyme from Zophobas mealworm, an AMP/CoA-ligase displaying weak luminescence activity, with those of cloned luciferases from the three main families of luminescent beetles: Phrixthrix hirtus railroad worm; Pyrearinus termitilluninans click beetle and Photinus pyralis firefly. The catalytic constant of the mealworm enzyme was 2-4 orders of magnitude lower than that of beetle luciferases, but 3 orders of magnitude above the non-catalyzed chemiluminescence of luciferyl-adenylate in buffer. Studies with d- and L-luciferin and their adenylates show that the luminescence reaction of the luciferase-like enzyme and beetle luciferases are stereoselective for D-luciferin and its adenylate, and that the selectivity is determined mainly at the adenylation step. Modelling studies showed that the luciferin binding site cavity of this enzyme is smaller and more hydrophobic than that of beetle luciferases. Therefore Zophobas mealworm enzyme displays true luciferase activity, keeping the attributes of an ancient protoluciferase. These results suggest that stereoselectivity for D-luciferin may have been a key event for the origin of oxygenase/luciferase activity in AMP/CoA-ligases, and that efficient luciferase activity may have further evolved mainly by increasing the catalytic constant of the oxidative reaction and the quantum yield of bioluminescence.
机译:甲虫萤光素酶由AMP / CoA连接酶演变而来。但是,尚不清楚新的荧光素酶活性如何进化。为了澄清这个问题,我们比较了最近克隆的来自拟南芥的蠕虫萤光素酶样酶(一种显示弱发光活性的AMP / CoA连接酶)的发光和催化特性,以及从三个主要的发光甲虫家族克隆的萤光素酶的发光和催化特性。 :Phrixthrix hirtus铁路蠕虫; Pyrearinus termitilluninans单击甲虫和pyhotalis pyralis萤火虫。粉虫酶的催化常数比甲虫萤光素酶低2-4个数量级,但比缓冲液中萤光素-腺苷酸的非催化化学发光高3个数量级。对d和L荧光素及其腺苷酸的研究表明,荧光素酶样酶和甲虫荧光素酶的发光反应对D荧光素及其腺苷酸具有立体选择性,并且选择性主要在腺苷酸化步骤确定。建模研究表明,该酶的萤光素结合位点空腔比甲虫萤光素酶更小,更疏水。因此,Zophobas粉虫酶显示出真正的萤光素酶活性,保留了古老的原萤光素酶的属性。这些结果表明,D-萤光素的立体选择性可能是AMP / CoA连接酶中加氧酶/萤光素酶活性起源的关键事件,有效的萤光素酶活性可能主要是通过增加氧化反应的催化常数而进一步发展的。生物发光的量子产率。

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