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Combinatorial Library Screening for Developing an Improved–Split- Firefly Luciferase Fragment-Assisted Complementation System for Studying Protein-Protein Interactions

机译:开发用于研究蛋白质-蛋白质相互作用的改进型萤火虫萤光素酶片段辅助补充系统的组合库筛选

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摘要

Split reporter based bioluminescence imaging is a useful strategy for studying protein-protein as well as other intracellular interactions. We have used a combinatorial strategy to identify a novel split site for firefly luciferase with improved characteristics over previously published split sites. A combination of fragments with greater absolute signal with near zero background signals was achieved by screening 115 different combinations. The identified fragments were further characterized by using five different interacting protein partners and an intramolecular folding strategy. Cell culture studies and imaging in living mice was performed to validate the new split sites. In addition, the signal generated by the newly identified combination of fragments (Nfluc 398/Cfluc 394) was compared with different split luciferase fragments currently in use for studying protein-protein interactions and shown to be markedly superior with a lower self-complementation signal and equal or higher post-interaction absolute signal. This study also identified many different combinations of non-overlapping and overlapping firefly luciferase fragments that can be used for studying different cellular events such as sub cellular localization of proteins, cell-cell fusion, and evaluating cell delivery vehicles, in addition to protein-protein interactions, both in cells and small living animals.
机译:基于拆分报告基因的生物发光成像是研究蛋白质-蛋白质以及其他细胞内相互作用的有用策略。我们已经使用了一种组合策略来确定萤火虫萤光素酶的新型拆分位点,其特征比以前公布的拆分位点有所改善。通过筛选115种不同的组合,可以得到具有更大绝对信号和接近零背景信号的片段的组合。通过使用五种不同的相互作用蛋白伴侣和分子内折叠策略,进一步鉴定鉴定出的片段。进行了活体小鼠的细胞培养研究和成像,以验证新的分裂位点。此外,将新鉴定出的片段组合(Nfluc 398 / Cfluc 394)产生的信号与目前用于研究蛋白质-蛋白质相互作用的不同分裂荧光素酶片段进行了比较,结果显示其信号互补性较低,等于或大于交互后的绝对信号。这项研究还确定了非重叠和重叠萤火虫荧光素酶片段的许多不同组合,这些片段可用于研究不同的细胞事件,例如蛋白质的亚细胞定位,细胞-细胞融合以及评估细胞传递载体。细胞和小型动物体内的相互作用。

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