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Intein-Mediated Reporter Gene Assay for Detecting Protein-Protein Interactions in Living Mammalian Cells

机译:Intein介导的报告基因检测活哺乳动物细胞中蛋白质相互作用的基因检测

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For nondestructive analysis of chemical processes in living mammalian cells, here we developed a new reporter gene assay for detecting cytosolic protein-protein interactions based on protein splicing of transcription factors with DnaE inteins. The protein splicing induces connection of a DNA-binding protein (modified LexA; mLexA) with a transcription activation domain of a herpes simplex virus protein (VP 16AD). We thereby circumvented the limitation of earlier methods for monitoring protein-protein interactions, including the two-hybrid systems, protein complementation systems (PCS), and protein reconstitution systems, and rather combined their advantages. To test the applicability of this method, we monitored epidermal growth factor (EGF)-induced interactions on cell membranes of a known partner, an oncogenic product Ras and its target Raf-1. Ras was connected with N-terminal DnaE and mLexA, while Raf-1 was connected with C-terminal DnaE and VP16AD. Upon stimulation with EGF, the interaction between Ras and Raf-1 triggered folding of the DnaEs, thereby inducing protein splicing to form mLexA-VP16AD fusion protein, and transcription of a reporter gene, firefly luciferase. The extent of Ras-Raf-1 interaction was quantified by measuring the luciferase activity. The interaction was not able to be monitored by two-hybrid systems nor by PCS of split firefly luciferases; however, by using the protein splicing elements and the reporter gene, we obtained the bioluminescence signals sufficient for evaluation of the interactions close to cell membranes.
机译:为了对活的哺乳动物细胞中的化学过程进行非破坏性分析,我们在此开发了一种新的报告基因测定法,用于基于转录因子与DnaE内含肽的蛋白剪接来检测胞浆蛋白-蛋白相互作用。该蛋白剪接诱导DNA结合蛋白(修饰的LexA; mLexA)与单纯疱疹病毒蛋白(VP 16AD)的转录激活域连接。因此,我们规避了用于监视蛋白质-蛋白质相互作用的早期方法的局限性,包括双杂交系统,蛋白质互补系统(PCS)和蛋白质重构系统,而是结合了它们的优势。为了测试此方法的适用性,我们监测了表皮生长因子(EGF)诱导的已知伴侣,致癌产物Ras及其靶Raf-1的细胞膜上的相互作用。 Ras与N末端DnaE和mLexA连接,而Raf-1与C末端DnaE和VP16AD连接。用EGF刺激后,Ras和Raf-1之间的相互作用触发DnaE的折叠,从而诱导蛋白剪接形成mLexA-VP16AD融合蛋白,并报告基因萤火虫荧光素酶的转录。通过测量荧光素酶活性来定量Ras-Raf-1相互作用的程度。不能通过两杂交系统或分裂萤火虫荧光素酶的PCS来监测相互作用。然而,通过使用蛋白质剪接元件和报道基因,我们获得了足以评估靠近细胞膜相互作用的生物发光信号。

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