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Firefly Luciferase and Rluc8 Exhibit Differential Sensitivity to Oxidative Stress in Apoptotic Cells

机译:萤火虫荧光素酶和Rluc8对凋亡细胞的氧化应激表现出不同的敏感性。

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摘要

Over the past decade, firefly Luciferase (fLuc) has been used in a wide range of biological assays, providing insight into gene regulation, protein-protein interactions, cell proliferation, and cell migration. However, it has also been well established that fLuc activity can be highly sensitive to its surrounding environment. In this study, we found that when various cancer cell lines (HeLa, MCF-7, and 293T) stably expressing fLuc were treated with staurosporine (STS), there was a rapid loss in bioluminescence. In contrast, a stable variant of Renilla luciferase (RLuc), RLuc8, exhibited significantly prolonged functionality under the same conditions. To identify the specific underlying mechanism(s) responsible for the disparate sensitivity of RLuc8 and fLuc to cellular stress, we conducted a series of inhibition studies that targeted known intracellular protein degradation/modification pathways associated with cell death. Interestingly, these studies suggested that reactive oxygen species, particularly hydrogen peroxide (H2O2), was responsible for the diminution of fLuc activity. Consistent with these findings, the direct application of H2O2 to HeLa cells also led to a reduction in fLuc bioluminescence, while H2O2 scavengers stabilized fLuc activity. Comparatively, RLuc8 was far less sensitive to ROS. These observations suggest that fLuc activity can be substantially altered in studies where ROS levels become elevated and can potentially lead to ambiguous or misleading findings.
机译:在过去的十年中,萤火虫萤光素酶(fLuc)已被广泛用于生物学测定中,从而提供了对基因调控,蛋白质-蛋白质相互作用,细胞增殖和细胞迁移的深入了解。但是,fLuc活性对其周围环境高度敏感也已得到公认。在这项研究中,我们发现当使用星形孢菌素(STS)处理稳定表达fLuc的各种癌细胞系(HeLa,MCF-7和293T)时,生物发光会迅速丧失。相比之下,海肾荧光素酶(RLuc)的稳定变体RLuc8在相同条件下的功能大大延长。为了确定引起RLuc8和fLuc对细胞应激的不同敏感性的具体潜在机制,我们进行了一系列抑制研究,这些抑制研究的目标是与细胞死亡相关的已知细胞内蛋白质降解/修饰途径。有趣的是,这些研究表明活性氧,特别是过氧化氢(H2O2)是fLuc活性降低的原因。与这些发现一致,将H2O2直接应用于HeLa细胞也导致fLuc生物发光减少,而H2O2清除剂则稳定了fLuc活性。相比之下,RLuc8对ROS的敏感度要低得多。这些观察结果表明,在ROS水平升高的研究中,fLuc活性可能会发生重大变化,并可能导致模棱两可或误导性的发现。

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