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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Bright-field microscopy visualization of proteins and protein complexes by in situ proximity ligation with peroxidase detection.
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Bright-field microscopy visualization of proteins and protein complexes by in situ proximity ligation with peroxidase detection.

机译:通过过氧化物酶检测原位邻近连接技术,对蛋白质和蛋白质复合物进行明场显微镜观察。

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BACKGROUND: The in situ proximity ligation assay (PLA) allows a protein or protein complex to be represented as an amplifiable DNA molecule. Recognition is mediated by proximity probes consisting of antibodies coupled with oligonucleotides. Upon dual binding of the proximity probes, the oligonucleotides direct the formation of a circular DNA molecule, which is then amplified by rolling-circle replication. The localized concatemeric product is then detected with fluorescent probes. The in situ PLA enables localized detection of individual native proteins or interacting protein pairs in fixed cells or tissue sections, thus providing an important tool for basic and clinical research. METHODS: We used horseradish peroxidase (HRP)-conjugated oligonucleotides to couple in situ PLA with enzymatic visualization of the localized detection event. RESULTS: We demonstrate the detection of protein complexes, both in cells and in tissue sections, and show that we can quantify the complexes with image-analysis software specially developed for recognizing HRP signals in bright-field microscopy images. We show that fluorescence and HRP signals produce equivalent results, both in cultured cells and in tissue samples. CONCLUSIONS: The combination of in situ PLA with bright-field detection and automated image analysis allows the signals present to be counted in an automated fashion and thus provides a sensitive and specific method for quantification of proteins and protein complexes with bright-field microscopy. With this approach, in situ PLA can be used without the requirement for expensive fluorescence microscopes, thereby avoiding problems with nonspecific fluorescence while maintaining compatibility with conventional histologic staining.
机译:背景:原位邻近连接测定(PLA)可以将蛋白质或蛋白质复合物表示为可扩增的DNA分子。识别由包含抗体和寡核苷酸的邻近探针介导。在接近探针双重结合后,寡核苷酸指导环状DNA分子的形成,然后通过滚环复制进行扩增。然后用荧光探针检测定位的串联产物。原位PLA能够对固定细胞或组织切片中的单个天然蛋白质或相互作用的蛋白质对进行局部检测,从而为基础和临床研究提供了重要的工具。方法:我们使用辣根过氧化物酶(HRP)偶联的寡核苷酸将原位PLA与酶促可视化的局部检测事件耦合。结果:我们展示了在细胞和组织切片中蛋白质复合物的检测,并表明我们可以使用专门开发用于在明场显微镜图像中识别HRP信号的图像分析软件对复合物进行定量。我们显示荧光和HRP信号在培养的细胞和组织样品中均产生相同的结果。结论:原位PLA与明场检测和自动图像分析相结合,可以自动计数存在的信号,从而提供了灵敏而特异的明场显微镜定量蛋白质和蛋白质复合物的方法。通过这种方法,可以在不需要昂贵的荧光显微镜的情况下使用原位PLA,从而避免了非特异性荧光的问题,同时保持了与常规组织学染色的兼容性。

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