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Detection of protein interactions based on GFP fragment complementation by fluorescence microscopy and spectrofluorometry.

机译:通过荧光显微镜和荧光分光光度法检测基于GFP片段互补的蛋白质相互作用。

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摘要

We have developed a set of simple modifications of the green fluorescent protein (GFP)fragment reassembly assay in bacteria that permits: (i)fluorescent microscopy visualization of GFP reassembly only 1-2 h after induction of protein expression, thus approximating the detection of GFP reassembly to the real-time dynamics of protein complex formation in living cells; (ii) spectrofluorometric detection of reassembled GFP fluorescent signals directly in lysates from cell suspension thereby avoiding, in many cases, the need for tag-affinity isolation of protein complexes; and (iii) comparative quantification of signal intensity in numerous cell-sample lysates using a Bio-Rad IQ5 spectrofluorometric detection system (Bio-Rad Laboratories, Madrid, Spain). Collectively, the results demonstrate that the combination of microscopic and spectrofluorometric detection provides a time-saving and sensitive alternative to existing methods of fluorescence complementation analysis.
机译:我们已经开发出一套简单的细菌中绿色荧光蛋白(GFP)片段重组检测方法的修饰方法,该方法可以:(i)诱导蛋白质表达后仅1-2小时的GFP重组荧光显微镜观察,从而近似于GFP的检测重新组装到活细胞中蛋白质复合物形成的实时动态; (ii)通过荧光光谱法直接检测细胞悬浮液中裂解物中重组的GFP荧光信号,从而在许多情况下避免了对蛋白质复合物进行标签亲和分离的需要; (iii)使用Bio-Rad IQ5荧光分光光度检测系统(Bio-Rad Laboratories,马德里,西班牙)对众多细胞样品裂解物中的信号强度进行比较定量。总的来说,结果表明,显微检测和荧光光谱检测相结合,为现有的荧光互补分析方法提供了一种省时又灵敏的选择。

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