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Gaussia princeps luciferase: a bioluminescent substrate for oxidative protein folding

机译:Gaussia princeps荧光素酶:氧化蛋白折叠的生物发光底物

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摘要

Gaussia princeps luciferase (GLuc) generates an intense burst of blue light when exposed to coelenterazine in the absence of ATP. Here we show that this 5‐disulfide containing enzyme can be used as a facile and convenient substrate for studies of oxidative protein folding. Reduced GLuc (rGLuc), with 10 free cysteine residues, is completely inactive as a luciferase but >60% bioluminescence activity, compared to controls, can be recovered using a range of oxidizing regimens in the absence of the exogenous shuffling activity of protein disulfide isomerase (PDI). The sulfhydryl oxidase QSOX1 can be assayed using rGLuc in a simple bioluminescence plate reader format. Similarly, low concentrations of rGLuc can be oxidized by millimolar levels of dehydroascorbate, hydrogen peroxide or much lower concentrations of sodium tetrathionate. The oxidative refolding of rGLuc in the presence of a range of glutathione redox buffers is only marginally accelerated by micromolar levels of PDI. This modest rate enhancement probably results from a relatively simple disulfide connectivity in native GLuc; reflecting two homologous domains each carrying two disulfide bonds with a single interdomain disulfide. When GLuc is reoxidized under denaturing conditions the resulting scrambled protein (sGLuc) can be used in a sensitive bioluminescence assay for reduced PDI in the absence of added exogenous thiols. Finally, the general facility by which rGLuc can recover bioluminescent activity in vitro provides a sensitive method for the assessment of inhibitors of oxidative protein folding.
机译:当在没有ATP的情况下暴露于腔肠素时,高斯princeps荧光素酶(GLuc)产生强烈的蓝光爆发。在这里,我们证明了这种含有5-二硫键的酶可以用作研究氧化性蛋白折叠的便捷基质。还原的GLuc(rGLuc)具有10个游离的半胱氨酸残基,作为荧光素酶是完全无活性的,但是与对照相比,> 60%的生物发光活性可以在不存在蛋白二硫键异构酶外源改组活性的情况下,使用一系列氧化方案进行回收。 (PDI)。巯基氧化酶QSOX1可以使用rGLuc以简单的生物发光读板器格式进行测定。同样,低浓度的rGLuc可被毫摩尔水平的脱氢抗坏血酸盐,过氧化氢或低浓度的四硫代硫酸钠氧化。在一定范围的谷胱甘肽氧化还原缓冲液存在下,rGLuc的氧化重折叠仅通过微摩尔水平的PDI略微加速。这种适度的速率提升可能是由于本地GLuc中相对简单的二硫键连接导致的。反映两个同源结构域,每个结构域带有一个域间二硫键,每个域带有两个二硫键。当GLuc在变性条件下重新氧化时,可以在不添加外源硫醇的情况下,将所得的加扰蛋白(sGLuc)用于灵敏的生物发光测定,以降低PDI。最后,rGLuc可以在体外恢复生物发光活性的通用设备为评估氧化蛋白折叠抑制剂提供了一种灵敏的方法。

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